44 results on '"Masson, Laurence"'
Search Results
2. Quality of life after breast-conserving therapy and adjuvant radiotherapy for non-low-risk ductal carcinoma in situ (BIG 3-07/TROG 07.01): 2-year results of a randomised, controlled, phase 3 trial
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Chua, Boon H, Phillips, Claire, Bryant, Guy, Westenberg, Helen, Purohit, Om Pra-Kesh, Ahern, Verity, Graham, Peter, Akra, Mohamed, McArdle, Orla, O'Brien, Peter, Ludbrook, Jane, Harvey, Jennifer, Maduro, John H, Gabelle-Flandin, Isabelle, Kirkove, Carine, Bedi, Carolyn, Martin, Joseph, Vu, Tony, Muanza, Theirry, Neal, Anthony, Courdi, Adel, Thariat, Juliette, Rakovitch, Eileen, Daniels, Laurien, van Hezewijk, Marjan, Cwajna, Wlasyslawa, Roelstraete, Adelheid, van Baardwijk, Angela, Russel, Nicola, Koch, Anne, Croke, Jennifer, Locke, Imogen, Jeal, Peter, Walker, Quenten, Thuraisingham, Kandeepeepan, Chauduri, Anupam, Joseph, David, Taylor, Mandy, Vanderkam, Sabine, Woo, Tony, Tang, Johann, Yassa, Michael, Wai, Elaine, Hewitt, Susan, Mahmood, Shazia, Gilmore, Jennifer, Ofi, Bolante, Bahl, Amit, Vujovic, Olga, Yu, Edward, Le, Duc, Kong, Iwa, Nichol, Alan, Bijker, Nina, Delaney, Geoff, Feigen, Malcolm, Lim, Adeline, Chao, Michael, Latham, Margaret, Algurafi, Hafiz, Tausch, Christoph, Khoo, Eric, Leung, Sam, Taylor, Karen, Senthi, Sasha, Stevens, Andrea, Chaudhuri, Abhro, Cleator, Susan, Brunt, Adrian Murray, Babington, Scott, Christie, David, Zwahlen, Daniel, Schratzenstaller, Ulrich, Masson, Laurence, Storey, Nicola, Kumar, Eshwar, Sherwin, Liz, Weytjens, Reinhilde, Ravi, Sharma, Lawton, Patricia, Angell, Ruth, Round, Glenys, Allen, Angela, Thotathil, Ziad, Anthes, Margaret, Reuter, Christiane, Pettit, Laura, Zissiadis, Yvonne, Elder, Christine, Verbeek-de Kanter, Antoinette, Lirette, Andree, Plasswilm, Ludwig, Spooner, David, Hoar, Fiona, Mohamed, Islam, Lossl, Kristina, Loo, Vivienne, Richetti, Antonella, Evans, Tamasin, Hennessy, Aisling, El-Mallah, Medhat, Skala, Marketa, Awad, Raef, Germain, Isabelle, Mitine, Carine, Van Parijs, Hilde, Churn, Mark, Walji, Nawaz, Francis, Michael, Stellamans, Karin, Gruber, Gunther, Ivaldi, Giovanni, Alhasso, Abdulla, Kenny, Lizbeth, Tiver, Ken, Griffin, Matthew, Lamoury, Gillian, Trovo, Marco, Algufarfi, Hafiz, Lah, Minjae, Carruthers, Scott, Papadatos, George, Paardekooper, Gabriel, Persic, Mojca, Lavery, Bernadette, King, Madeleine T, Link, Emma K, Whelan, Tim J, Olivotto, Ivo A, Kunkler, Ian, Westenberg, Antonia Helen, Gruber, Guenther, and Schofield, Penny
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- 2020
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3. High-Order Commensurate Zwitterionic Quinonoid Phase Induces a Nanoscale Dipole Lattice on Graphene.
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Nassar, Gaelle, Cortés-Arriagada, Diego, Sanhueza-Vega, Luis, Landois, Périne, Paillet, Matthieu, Hrich, Haitham, Contreras, Sylvie, Siri, Olivier, Pascal, Simon, Masson, Laurence, Becker, Conrad, Ranguis, Alain, Parret, Romain, Canard, Gabriel, and Leoni, Thomas
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- 2024
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4. Electrical monitoring of organic crystal phase transition using MoS2 field effect transistor
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Boulet, Ilan, primary, Pascal, Simon, additional, Bedu, Frederic, additional, Ozerov, Igor, additional, Ranguis, Alain, additional, Leoni, Thomas, additional, Becker, Conrad, additional, Masson, Laurence, additional, Matkovic, Aleksandar, additional, Teichert, Christian, additional, Siri, Olivier, additional, Attaccalite, Claudio, additional, Huntzinger, Jean-Roch, additional, Paillet, Matthieu, additional, Zahab, Ahmed, additional, and Parret, Romain, additional
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- 2023
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5. Epitaxial growth and structural properties of silicene and other 2D allotropes of Si
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Masson, Laurence, primary and Prévot, Geoffroy, additional
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- 2023
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6. Electrical monitoring of organic crystal phase transition using MoS2 field effect transistor
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Boulet, Ilan, Pascal, Simon, Bedu, F., Ozerov, Igor, Ranguis, Alain, Leoni, Thomas, Becker, Conrad, Masson, Laurence, Matkovic, Aleksandar, Tiechert, Christian, Siri, Olivier, Huntzinger, Jean-Roch, Paillet, Matthieu, Zahab, Ahmed Azmi, Parret, Romain, Centre Interdisciplinaire de Nanoscience de Marseille (CINaM), Aix Marseille Université (AMU)-Centre National de la Recherche Scientifique (CNRS), Institute of Physics, Montanuniversität Leoben, 8700, Leoben, Austria, Laboratoire Charles Coulomb (L2C), and Centre National de la Recherche Scientifique (CNRS)-Université de Montpellier (UM)
- Subjects
[CHIM.MATE]Chemical Sciences/Material chemistry ,[PHYS.COND]Physics [physics]/Condensed Matter [cond-mat] - Abstract
International audience; Hybrid van der Waals heterostructures made of 2D materials and organic molecules exploit the high sensitivity of 2D materials to all interfacial modifications and the inherent versatility of the organic compounds [1-2]. In this study, we are interested in the quinoïdal zwitterion/MoS2 hybrid system in which organic crystals are grown by epitaxy on the MoS2 surface and can reorganize in other forms after thermal annealing [3]. By means of field effect transistor measurements and atomic force microscopy, we demonstrate that the charge transfer between organic molecules and 2D materials strongly depends on the conformation of the molecular film. This work shows the great sensibility of MoS2 transistors for sensing molecular events occurring at the nanoscale providing a new experimental tool in addition to the usual microscopies and spectroscopies techniques.References :[1] Late, D. J.; Huang, Y.-K.; Liu, B.; Acharya, J.; Shirodkar, S. N.; Luo, J.; Yan, A.; Charles, D.; Waghmare, U. V.; Dravid, V. P.; Rao, C. N. R. Sensing Behavior of Atomically Thin-Layered MoS 2 Transistors. ACS Nano 2013, 7 (6), 4879–4891. [2] Li, N.; Wang, Q.; Shen, C.; Wei, Z.; Yu, H.; Zhao, J.; Lu, X.; Wang, G.; He, C.; Xie, L.; Zhu, J.; Du, L.; Yang, R.; Shi, D.; Zhang, G. Large-Scale Flexible and Transparent Electronics Based on Monolayer Molybdenum Disulfide Field-Effect Transistors. Nat. Electron. 2020, 3 (11), 711–717.[3] Lockhart de la Rosa, C. J.; Phillipson, R.; Teyssandier, J.; Adisoejoso, J.; Balaji, Y.; Huyghebaert, C.; Radu, I.; Heyns, M.; De Feyter, S.; De Gendt, S. Molecular Doping of MoS 2 Transistors by Self-Assembled Oleylamine Networks. Appl. Phys. Lett. 2016, 109 (25), 253112.
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- 2022
7. Fine scale spatio-temporal life history shifts in an invasive species at its expansion front
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Masson, Laurence, Brownscombe, Jacob W., and Fox, Michael G.
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- 2016
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8. Nanoscale Si template for the growth of self-organized one-dimensional nanostructures
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Masson, Laurence, Sahaf, Houda, Amsalem, Patrick, Dettoni, Florent, Moyen, Eric, Koch, Norbert, and Hanbücken, Margrit
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- 2013
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9. A global-scale screening of non-native aquatic organisms to identify potentially invasive species under current and future climate conditions
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Vilizzi, Lorenzo, Copp, Gordon H., Hill, Jeffrey E., Adamovich, Boris, Aislabie, Luke, Akin, Daniel, Al-Faisal, Abbas J., Almeida, David, Azmai, M. N. Amal, Bakiu, Rigers, Bellati, Adriana, Bernier, Renee, Bies, Jason M., Bilge, Gokcen, Branco, Paulo, Bui, Thuyet D., Canning-Clode, Joao, Cardoso Ramos, Henrique Anatole, Castellanos-Galindo, Gustavo A., Castro, Nuno, Chaichana, Ratcha, Chainho, Paula, Chan, Joleen, Cunico, Almir M., Curd, Amelia, Dangchana, Punyanuch, Dashinov, Dimitriy, Davison, Phil, I, Mariele P. de Camargo, Dodd, Jennifer A., Donahou, Allison L. Durland, Edsman, Lennart, Ekmekci, F. Guler, Elphinstone-Davis, Jessica, Eros, Tibor, Evangelista, Charlotte, Fenwick, Gemma, Ferincz, Arpad, Ferreira, Teresa, Feunteun, Eric, Filiz, Halit, Forneck, Sandra C., Gajduchenko, Helen S., Monteiro, Joao Gama, Gestoso, Ignacio, Giannetto, Daniela, Gilles, Allan S., Jr., Gizzi, Francesca, Glamuzina, Branko, Glamuzina, Luka, Goldsmit, Jesica, Gollasch, Stephan, Goulletquer, Philippe, Grabowska, Joanna, Harmer, Rogan, Haubrock, Phillip J., He, Dekui, Hean, Jeffrey W., Herczeg, Gabor, Howland, Kimberly L., Ilhan, Ali, Interesova, Elena, Jakubcinova, Katarina, Jelmert, Anders, Johnsen, Stein, I, Kakareko, Tomasz, Kanongdate, Kamalaporn, Killi, Nurcin, Kim, Jeong-Eun, Kirankaya, Serife Gulsun, Knazovicka, Dominika, Kopecky, Oldrich, Kostov, Vasil, Koutsikos, Nicholas, Kozic, Sebastian, Kuljanishvili, Tatia, Kumar, Biju, Kumar, Lohith, Kurita, Yoshihisa, Kurtul, Irmak, Lazzaro, Lorenzo, Lee, Laura, Lehtiniemi, Maiju, Leonardi, Giovanni, Leuven, Rob S. E. W., Li, Shan, Lipinskaya, Tatsiana, Liu, Fei, Lloyd, Lance, Lorenzoni, Massimo, Luna, Sergio Alberto, Lyons, Timothy J., Magellan, Kit, Malmstrom, Martin, Marchini, Agnese, Marr, Sean M., Masson, Gerard, Masson, Laurence, McKenzie, Cynthia H., Memedemin, Daniyar, Mendoza, Roberto, Minchin, Dan, Miossec, Laurence, Moghaddas, Seyed Daryoush, Moshobane, Moleseng C., Mumladze, Levan, Naddafi, Rahmat, Najafi-Majd, Elnaz, Nastase, Aurel, Navodaru, Ion, Neal, J. Wesley, Nienhuis, Sarah, Nimtim, Matura, Nolan, Emma T., Occhipinti-Ambrogi, Anna, Ojaveer, Henn, Olenin, Sergej, Olsson, Karin, Onikura, Norio, O'Shaughnessy, Kathryn, Paganelli, Daniele, Parretti, Paola, Patoka, Jiri, Jr, Richard Thomas B. Pavia, Pellitteri-Rosa, Daniele, Pelletier-Rousseau, Michele, Peralta, Elfritzson M., Perdikaris, Costas, Pietraszewski, Dariusz, Piria, Marina, Pitois, Sophie, Pompei, Laura, Poulet, Nicolas, Preda, Cristina, Puntila-Dodd, Riikka, Qashqaei, Ali T., Radocaj, Tena, Rahmani, Hossein, Raj, Smrithy, Reeves, David, Ristovska, Milica, Rizevsky, Viktor, Robertson, D. Ross, Robertson, Peter, Ruykys, Laura, Sab, Abdulwakil. O, Santos, Jose M., Sari, Hasan M., Segurado, Pedro, Semenchenko, Vitaliy, Senanan, Wansuk, Simard, Nathalie, Simonovic, Predrag, Skora, MichalE, Svolikova, Kristina Slovak, Smeti, Evangelia, Smidova, Tereza, Spelic, Ivan, Srebaliene, Greta, Stasolla, Gianluca, Stebbing, Paul, Stevove, Barbora, Suresh, Vettath R., Szajbert, Bettina, Ta, Kieu Anh T., Tarkan, Ali Serhan, Tempesti, Jonathan, Therriault, Thomas W., Tidbury, Hannah J., Top-Karakus, Nildeniz, Tricarico, Elena, Troca, DeboraF A., Tsiamis, Konstantinos, Tuckett, Quenton M., Tutman, Pero, Uyan, Umut, Uzunova, Eliza, Vardakas, Leonidas, Velle, Gaute, Verreycken, Hugo, Vintsek, Lizaveta, Wei, Hui, Weiperth, Andras, Wey, Olaf L. F., Winter, Emily R., Wlodarczyk, Radoslaw, Wood, Louisa E., Yang, Ruibin, Yapici, Sercan, Yeo, Shayne S. B., Yogurtcuoglu, Baran, Yunnie, Anna L. E., Zhu, Yunjie, Zieba, Grzegorz, Zitnanova, Kristina, Clarke, Stacey, Vilizzi, Lorenzo, Copp, Gordon H., Hill, Jeffrey E., Adamovich, Boris, Aislabie, Luke, Akin, Daniel, Al-Faisal, Abbas J., Almeida, David, Azmai, M. N. Amal, Bakiu, Rigers, Bellati, Adriana, Bernier, Renee, Bies, Jason M., Bilge, Gokcen, Branco, Paulo, Bui, Thuyet D., Canning-Clode, Joao, Cardoso Ramos, Henrique Anatole, Castellanos-Galindo, Gustavo A., Castro, Nuno, Chaichana, Ratcha, Chainho, Paula, Chan, Joleen, Cunico, Almir M., Curd, Amelia, Dangchana, Punyanuch, Dashinov, Dimitriy, Davison, Phil, I, Mariele P. de Camargo, Dodd, Jennifer A., Donahou, Allison L. Durland, Edsman, Lennart, Ekmekci, F. Guler, Elphinstone-Davis, Jessica, Eros, Tibor, Evangelista, Charlotte, Fenwick, Gemma, Ferincz, Arpad, Ferreira, Teresa, Feunteun, Eric, Filiz, Halit, Forneck, Sandra C., Gajduchenko, Helen S., Monteiro, Joao Gama, Gestoso, Ignacio, Giannetto, Daniela, Gilles, Allan S., Jr., Gizzi, Francesca, Glamuzina, Branko, Glamuzina, Luka, Goldsmit, Jesica, Gollasch, Stephan, Goulletquer, Philippe, Grabowska, Joanna, Harmer, Rogan, Haubrock, Phillip J., He, Dekui, Hean, Jeffrey W., Herczeg, Gabor, Howland, Kimberly L., Ilhan, Ali, Interesova, Elena, Jakubcinova, Katarina, Jelmert, Anders, Johnsen, Stein, I, Kakareko, Tomasz, Kanongdate, Kamalaporn, Killi, Nurcin, Kim, Jeong-Eun, Kirankaya, Serife Gulsun, Knazovicka, Dominika, Kopecky, Oldrich, Kostov, Vasil, Koutsikos, Nicholas, Kozic, Sebastian, Kuljanishvili, Tatia, Kumar, Biju, Kumar, Lohith, Kurita, Yoshihisa, Kurtul, Irmak, Lazzaro, Lorenzo, Lee, Laura, Lehtiniemi, Maiju, Leonardi, Giovanni, Leuven, Rob S. E. W., Li, Shan, Lipinskaya, Tatsiana, Liu, Fei, Lloyd, Lance, Lorenzoni, Massimo, Luna, Sergio Alberto, Lyons, Timothy J., Magellan, Kit, Malmstrom, Martin, Marchini, Agnese, Marr, Sean M., Masson, Gerard, Masson, Laurence, McKenzie, Cynthia H., Memedemin, Daniyar, Mendoza, Roberto, Minchin, Dan, Miossec, Laurence, Moghaddas, Seyed Daryoush, Moshobane, Moleseng C., Mumladze, Levan, Naddafi, Rahmat, Najafi-Majd, Elnaz, Nastase, Aurel, Navodaru, Ion, Neal, J. Wesley, Nienhuis, Sarah, Nimtim, Matura, Nolan, Emma T., Occhipinti-Ambrogi, Anna, Ojaveer, Henn, Olenin, Sergej, Olsson, Karin, Onikura, Norio, O'Shaughnessy, Kathryn, Paganelli, Daniele, Parretti, Paola, Patoka, Jiri, Jr, Richard Thomas B. Pavia, Pellitteri-Rosa, Daniele, Pelletier-Rousseau, Michele, Peralta, Elfritzson M., Perdikaris, Costas, Pietraszewski, Dariusz, Piria, Marina, Pitois, Sophie, Pompei, Laura, Poulet, Nicolas, Preda, Cristina, Puntila-Dodd, Riikka, Qashqaei, Ali T., Radocaj, Tena, Rahmani, Hossein, Raj, Smrithy, Reeves, David, Ristovska, Milica, Rizevsky, Viktor, Robertson, D. Ross, Robertson, Peter, Ruykys, Laura, Sab, Abdulwakil. O, Santos, Jose M., Sari, Hasan M., Segurado, Pedro, Semenchenko, Vitaliy, Senanan, Wansuk, Simard, Nathalie, Simonovic, Predrag, Skora, MichalE, Svolikova, Kristina Slovak, Smeti, Evangelia, Smidova, Tereza, Spelic, Ivan, Srebaliene, Greta, Stasolla, Gianluca, Stebbing, Paul, Stevove, Barbora, Suresh, Vettath R., Szajbert, Bettina, Ta, Kieu Anh T., Tarkan, Ali Serhan, Tempesti, Jonathan, Therriault, Thomas W., Tidbury, Hannah J., Top-Karakus, Nildeniz, Tricarico, Elena, Troca, DeboraF A., Tsiamis, Konstantinos, Tuckett, Quenton M., Tutman, Pero, Uyan, Umut, Uzunova, Eliza, Vardakas, Leonidas, Velle, Gaute, Verreycken, Hugo, Vintsek, Lizaveta, Wei, Hui, Weiperth, Andras, Wey, Olaf L. F., Winter, Emily R., Wlodarczyk, Radoslaw, Wood, Louisa E., Yang, Ruibin, Yapici, Sercan, Yeo, Shayne S. B., Yogurtcuoglu, Baran, Yunnie, Anna L. E., Zhu, Yunjie, Zieba, Grzegorz, Zitnanova, Kristina, and Clarke, Stacey
- Abstract
The threat posed by invasive non-native species worldwide requires a global approach to identify which introduced species are likely to pose an elevated risk of impact to native species and ecosystems. To inform policy, stakeholders and management decisions on global threats to aquatic ecosystems, 195 assessors representing 120 risk assessment areas across all six inhabited continents screened 819 non-native species from 15 groups of aquatic organisms (freshwater, brackish, marine plants and animals) using the Aquatic Species Invasiveness Screening Kit. This multi-lingual decision-support tool for the risk screening of aquatic organisms provides assessors with risk scores for a species under current and future climate change conditions that, following a statistically based calibration, permits the accurate classification of species into high-, medium- and low-risk categories under current and predicted climate conditions. The 1730 screenings undertaken encompassed wide geographical areas (regions, political entities, parts thereof, water bodies, river basins, lake drainage basins, and marine regions), which permitted thresholds to be identified for almost all aquatic organismal groups screened as well as for tropical, temperate and continental climate classes, and for tropical and temperate marine ecoregions. In total, 33 species were identified as posing a ‘very high risk’ of being or becoming invasive, and the scores of several of these species under current climate increased under future climate conditions, primarily due to their wide thermal tolerances. The risk thresholds determined for taxonomic groups and climate zones provide a basis against which area-specific or climate-based calibrated thresholds may be interpreted. In turn, the risk rankings help decision-makers identify which species require an immediate ‘rapid’ management action (e.g. eradication, control) to avoid or mitigate adverse impacts, which require a full risk assessment, and which are to be r
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- 2022
10. Validation of an on-line solid-phase extraction method coupled to liquid chromatography–tandem mass spectrometry detection for the determination of Indacaterol in human serum
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Emotte, Corinne, Heudi, Olivier, Deglave, Fanny, Bonvie, Adrien, Masson, Laurence, Picard, Franck, Chaturvedi, Animesh, Majumdar, Tapan, Agarwal, Ashish, Woessner, Ralph, and Kretz, Olivier
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- 2012
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11. Electrical monitoring of organic crystal phase transition using MoS2 field effect transistor.
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Boulet, Ilan, Pascal, Simon, Bedu, Frederic, Ozerov, Igor, Ranguis, Alain, Leoni, Thomas, Becker, Conrad, Masson, Laurence, Matkovic, Aleksandar, Teichert, Christian, Siri, Olivier, Attaccalite, Claudio, Huntzinger, Jean-Roch, Paillet, Matthieu, Zahab, Ahmed, and Parret, Romain
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- 2023
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12. Selective functionalization of substrates through assembled nanostructures: From physics to biology
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Moyen, Eric, Macé, Magali, Massou, Sophie, Sahaf, Houda, Masson, Laurence, Sengupta, Kheya, and Hanbücken, Margrit
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- 2009
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13. Large scale ordered topographical and chemical nano-features from anodic alumina templates
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Massou, Sophie, Masson, Laurence, Ozerov, Igor, Moyen, Eric, Sengupta, Kheya, and Hanbücken, Margrit
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- 2009
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14. A global-scale screening of non-native aquatic organisms to identify potentially invasive species under current and future climate conditions
- Author
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Vilizzi, Lorenzo, primary, Copp, Gordon H., additional, Hill, Jeffrey E., additional, Adamovich, Boris, additional, Aislabie, Luke, additional, Akin, Daniel, additional, Al-Faisal, Abbas J., additional, Almeida, David, additional, Azmai, M.N. Amal, additional, Bakiu, Rigers, additional, Bellati, Adriana, additional, Bernier, Renée, additional, Bies, Jason M., additional, Bilge, Gökçen, additional, Branco, Paulo, additional, Bui, Thuyet D., additional, Canning-Clode, João, additional, Cardoso Ramos, Henrique Anatole, additional, Castellanos-Galindo, Gustavo A., additional, Castro, Nuno, additional, Chaichana, Ratcha, additional, Chainho, Paula, additional, Chan, Joleen, additional, Cunico, Almir M., additional, Curd, Amelia, additional, Dangchana, Punyanuch, additional, Dashinov, Dimitriy, additional, Davison, Phil I., additional, de Camargo, Mariele P., additional, Dodd, Jennifer A., additional, Durland Donahou, Allison L., additional, Edsman, Lennart, additional, Ekmekçi, F. Güler, additional, Elphinstone-Davis, Jessica, additional, Erős, Tibor, additional, Evangelista, Charlotte, additional, Fenwick, Gemma, additional, Ferincz, Árpád, additional, Ferreira, Teresa, additional, Feunteun, Eric, additional, Filiz, Halit, additional, Forneck, Sandra C., additional, Gajduchenko, Helen S., additional, Gama Monteiro, João, additional, Gestoso, Ignacio, additional, Giannetto, Daniela, additional, Gilles, Allan S., additional, Gizzi, Francesca, additional, Glamuzina, Branko, additional, Glamuzina, Luka, additional, Goldsmit, Jesica, additional, Gollasch, Stephan, additional, Goulletquer, Philippe, additional, Grabowska, Joanna, additional, Harmer, Rogan, additional, Haubrock, Phillip J., additional, He, Dekui, additional, Hean, Jeffrey W., additional, Herczeg, Gábor, additional, Howland, Kimberly L., additional, İlhan, Ali, additional, Interesova, Elena, additional, Jakubčinová, Katarína, additional, Jelmert, Anders, additional, Johnsen, Stein I., additional, Kakareko, Tomasz, additional, Kanongdate, Kamalaporn, additional, Killi, Nurçin, additional, Kim, Jeong-Eun, additional, Kırankaya, Şerife Gülsün, additional, Kňazovická, Dominika, additional, Kopecký, Oldřich, additional, Kostov, Vasil, additional, Koutsikos, Nicholas, additional, Kozic, Sebastian, additional, Kuljanishvili, Tatia, additional, Kumar, Biju, additional, Kumar, Lohith, additional, Kurita, Yoshihisa, additional, Kurtul, Irmak, additional, Lazzaro, Lorenzo, additional, Lee, Laura, additional, Lehtiniemi, Maiju, additional, Leonardi, Giovanni, additional, Leuven, Rob S.E.W., additional, Li, Shan, additional, Lipinskaya, Tatsiana, additional, Liu, Fei, additional, Lloyd, Lance, additional, Lorenzoni, Massimo, additional, Luna, Sergio Alberto, additional, Lyons, Timothy J., additional, Magellan, Kit, additional, Malmstrøm, Martin, additional, Marchini, Agnese, additional, Marr, Sean M., additional, Masson, Gérard, additional, Masson, Laurence, additional, McKenzie, Cynthia H., additional, Memedemin, Daniyar, additional, Mendoza, Roberto, additional, Minchin, Dan, additional, Miossec, Laurence, additional, Moghaddas, Seyed Daryoush, additional, Moshobane, Moleseng C., additional, Mumladze, Levan, additional, Naddafi, Rahmat, additional, Najafi-Majd, Elnaz, additional, Năstase, Aurel, additional, Năvodaru, Ion, additional, Neal, J. Wesley, additional, Nienhuis, Sarah, additional, Nimtim, Matura, additional, Nolan, Emma T., additional, Occhipinti-Ambrogi, Anna, additional, Ojaveer, Henn, additional, Olenin, Sergej, additional, Olsson, Karin, additional, Onikura, Norio, additional, O'Shaughnessy, Kathryn, additional, Paganelli, Daniele, additional, Parretti, Paola, additional, Patoka, Jiří, additional, Pavia, Richard Thomas B., additional, Pellitteri-Rosa, Daniele, additional, Pelletier-Rousseau, Michèle, additional, Peralta, Elfritzson M., additional, Perdikaris, Costas, additional, Pietraszewski, Dariusz, additional, Piria, Marina, additional, Pitois, Sophie, additional, Pompei, Laura, additional, Poulet, Nicolas, additional, Preda, Cristina, additional, Puntila-Dodd, Riikka, additional, Qashqaei, Ali T., additional, Radočaj, Tena, additional, Rahmani, Hossein, additional, Raj, Smrithy, additional, Reeves, David, additional, Ristovska, Milica, additional, Rizevsky, Viktor, additional, Robertson, D. Ross, additional, Robertson, Peter, additional, Ruykys, Laura, additional, Saba, Abdulwakil O., additional, Santos, José M., additional, Sarı, Hasan M., additional, Segurado, Pedro, additional, Semenchenko, Vitaliy, additional, Senanan, Wansuk, additional, Simard, Nathalie, additional, Simonović, Predrag, additional, Skóra, Michał E., additional, Slovák Švolíková, Kristína, additional, Smeti, Evangelia, additional, Šmídová, Tereza, additional, Špelić, Ivan, additional, Srėbalienė, Greta, additional, Stasolla, Gianluca, additional, Stebbing, Paul, additional, Števove, Barbora, additional, Suresh, Vettath R., additional, Szajbert, Bettina, additional, Ta, Kieu Anh T., additional, Tarkan, Ali Serhan, additional, Tempesti, Jonathan, additional, Therriault, Thomas W., additional, Tidbury, Hannah J., additional, Top-Karakuş, Nildeniz, additional, Tricarico, Elena, additional, Troca, Débora F.A., additional, Tsiamis, Konstantinos, additional, Tuckett, Quenton M., additional, Tutman, Pero, additional, Uyan, Umut, additional, Uzunova, Eliza, additional, Vardakas, Leonidas, additional, Velle, Gaute, additional, Verreycken, Hugo, additional, Vintsek, Lizaveta, additional, Wei, Hui, additional, Weiperth, András, additional, Weyl, Olaf L.F., additional, Winter, Emily R., additional, Włodarczyk, Radosław, additional, Wood, Louisa E., additional, Yang, Ruibin, additional, Yapıcı, Sercan, additional, Yeo, Shayne S.B., additional, Yoğurtçuoğlu, Baran, additional, Yunnie, Anna L.E., additional, Zhu, Yunjie, additional, Zięba, Grzegorz, additional, Žitňanová, Kristína, additional, and Clarke, Stacey, additional
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- 2021
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15. Demonstration of the Existence of Dumbbell Silicene: A Stable Two-Dimensional Allotrope of Silicon
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Leoni, Thomas, primary, Hogan, Conor, additional, Zhang, Kai, additional, Daher Mansour, Michel, additional, Bernard, Romain, additional, Parret, Romain, additional, Resta, Andrea, additional, Colonna, Stefano, additional, Borensztein, Yves, additional, Ronci, Fabio, additional, Prévot, Geoffroy, additional, and Masson, Laurence, additional
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- 2021
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16. A global-scale screening of non-native aquatic organisms to identify potentially invasive species under current and future climate conditions
- Author
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Vilizzi, Lorenzo, Copp, Gordon H., Hill, Jeffrey E., Adamovich, Boris, Aislabie, Luke, Akin, Daniel, Al-Faisal, Abbas J., Almeida, David, Azmai, M. N. Amal, Bellati, Adriana, Bernier, Renee, Bies, Jason M., Bilge, Gokcen, Branco, Paulo, Canning-Clode, Joao, Castellanos-Galindo, Gustavo A., Chaichana, Ratcha, Chainho, Paula, Chan, Joleen, Cunico, Almir M., Curd, Amelia, Dashinov, Dimitriy, Davison, Phil, de Camargo, Mariele P., Dodd, Jennifer A., Donahou, Allison L. Durland, Edsman, Lennart, Ekmekci, F. Guler, Elphinstone-Davis, Jessica, Eros, Tibor, Evangelista, Charlotte, Fenwick, Gemma, Ferincz, Arpad, Ferreira, Teresa, Feunteun, Eric, Filiz, Halit, Forneck, Sandra C., Gajduchenko, Helen S., Gestoso, Ignacio, Giannetto, Daniela, Gilles, Allan S., Glamuzina, Branko, Glamuzina, Luka, Goldsmit, Jesica, Gollasch, Stephan, Goulletquer, Philippe, Grabowska, Joanna, Harmer, Rogan, Haubrock, Phillip J., He, Dekui, Hean, Jeffrey W., Herczeg, Gabor, Howland, Kimberly L., Ilhan, Ali, Interesova, Elena, Jakubcinova, Katarina, Jelmert, Anders, Johnsen, Stein, Kakareko, Tomasz, Kanongdate, Kamalaporn, Killi, Nurcin, Kim, Jeong-Eun, Kirankaya, Serife Gulsun, Knazovicka, Dominika, Kopecky, Oldrich, Kostov, Vasil, Koutsikos, Nicholas, Kozic, Sebastian, Kuljanishvili, Tatia, Kumar, Lohith, Kurita, Yoshihisa, Kurtul, Irmak, Lazzaro, Lorenzo, Lee, Laura, Lehtiniemi, Maiju, Leonardi, Giovanni, Leuven, Rob S. E. W., Li, Shan, Lipinskaya, Tatsiana, Liu, Fei, Lloyd, Lance, Lorenzoni, Massimo, Luna, Sergio Alberto, Lyons, Timothy J., Magellan, Kit, Malmstrom, Martin, Marchini, Agnese, Marr, Sean M., Masson, Gerard, Masson, Laurence, McKenzie, Cynthia H., Memedemin, Daniyar, Mendoza, Roberto, Minchin, Dan, Miossec, Laurence, Moghaddas, Seyed Daryoush, Moshobane, Moleseng C., Mumladze, Levan, Naddafi, Rahmat, Najafi-Majd, Elnaz, Nastase, Aurel, Navodaru, Ion, Neal, J. Wesley, Nienhuis, Sarah, Nimtim, Matura, Nolan, Emma T., Occhipinti-Ambrogi, Anna, Ojaveer, Henn, Olenin, Sergej, Olsson, Karin, Onikura, Norio, O'Shaughnessy, Kathryn, Paganelli, Daniele, Parretti, Paola, Patoka, Jiri, Jr, Richard Thomas B. Pavia, Pellitteri-Rosa, Daniele, Pelletier-Rousseau, Michele, Peralta, Elfritzson M., Perdikaris, Costas, Pietraszewski, Dariusz, Piria, Marina, Pitois, Sophie, Pompei, Laura, Poulet, Nicolas, Preda, Cristina, Puntila-Dodd, Riikka, Radocaj, Tena, Rahmani, Hossein, Raj, Smrithy, Reeves, David, Ristovska, Milica, Rizevsky, Viktor, Robertson, D. Ross, Robertson, Peter, Ruykys, Laura, Sab, AbdulwakilO, Santos, Jose M., Sari, Hasan M., Segurado, Pedro, Semenchenko, Vitaliy, Senanan, Wansuk, Simard, Nathalie, Simonovic, Predrag, Skora, MichalE, Svolikova, Kristina Slovak, Smeti, Evangelia, Smidova, Tereza, Spelic, Ivan, Srebaliene, Greta, Stasolla, Gianluca, Stebbing, Paul, Stevove, Barbora, Suresh, Vettath R., Szajbert, Bettina, Ta, Kieu Anh T., Tarkan, Ali Serhan, Tempesti, Jonathan, Therriault, Thomas W., Tidbury, Hannah J., Top-Karakus, Nildeniz, Tricarico, Elena, Troca, DeboraF A., Tsiamis, Konstantinos, Tuckett, Quenton M., Tutman, Pero, Uyan, Umut, Uzunova, Eliza, Vardakas, Leonidas, Velle, Gaute, Verreycken, Hugo, Vintsek, Lizaveta, Wei, Hui, Weiperth, Andras, Wey, Olaf L. F., Winter, Emily R., Wlodarczyk, Radoslaw, Wood, Louisa E., Yang, Ruibin, Yapici, Sercan, Yeo, Shayne S. B., Yogurtcuoglu, Baran, Yunnie, Anna L. E., Zhu, Yunjie, Zieba, Grzegorz, Zitnanova, Kristina, and Clarke, Stacey
- Subjects
Ecology - Abstract
The threat posed by invasive non-native species worldwide requires a global approach to identify which introduced species are likely to pose an elevated risk of impact to native species and ecosystems. To inform policy, stakeholders and management decisions on global threats to aquatic ecosystems, 195 assessors representing 120 risk assessment areas across all six inhabited continents screened 819 non-native species from 15 groups of aquatic organisms (freshwater, brackish, marine plants and animals) using the Aquatic Species Invasiveness Screening Kit. This multi-lingual decision-support tool for the risk screening of aquatic organisms provides assessors with risk scores for a species under current and future climate change conditions that, following a statistically based calibration, permits the accurate classification of species into high-, medium-and low-risk categories under current and predicted climate conditions. The 1730 screenings undertaken encompassed wide geographical areas (regions, political entities, parts thereof, water bodies, river basins, lake drainage basins, and marine regions), which permitted thresholds to be identified for almost all aquatic organismal groups screened as well as for tropical, temperate and continental climate classes, and for tropical and temperate marine ecoregions. In total, 33 species were identified as posing a & lsquo;very high risk & rsquo; of being or becoming invasive, and the scores of several of these species under current climate increased under future climate conditions, primarily due to their wide thermal tolerances. The risk thresholds determined for taxonomic groups and climate zones provide a basis against which area-specific or climate-based calibrated thresholds may be interpreted. In turn, the risk rankings help decision-makers identify which species require an immediate & lsquo;rapid & rsquo; management action (e.g. eradication, control) to avoid or mitigate adverse impacts, which require a full risk assessment, and which are to be restricted or banned with regard to importation and/or sale as ornamental or aquarium/fishery enhancement.(c) 2021 The Author(s). Published by Elsevier B.V. This is an open access article under the CC BY license (http:// creativecommons.org/licenses/by/4.0/).
- Published
- 2021
17. Speaking their language – development of a multilingual decision-support tool for communicating invasive species risks to decision makers and stakeholders
- Author
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Copp, Gordon H., Vilizzi, Lorenzo, Wei, Hui, Li, Shan, Piria, Marina, Al-faisal, Abbas J., Almeida, David, Atique, Usman, Al-wazzan, Zainab, Bakiu, Rigers, Bašić, Tea, Bui, Thuyet D., Canning-clode, João, Castro, Nuno, Chaichana, Ratcha, Çoker, Tülin, Dashinov, Dimitriy, Ekmekçi, F.güler, Erős, Tibor, Ferincz, Árpád, Ferreira, Teresa, Giannetto, Daniela, Gilles, Allan S., Głowacki, Łukasz, Goulletquer, Philippe, Interesova, Elena, Iqbal, Sonia, Jakubčinová, Katarína, Kanongdate, Kamalaporn, Kim, Jeong-eun, Kopecký, Oldřich, Kostov, Vasil, Koutsikos, Nicholas, Kozic, Sebastian, Kristan, Petra, Kurita, Yoshihisa, Lee, Hwang-goo, Leuven, Rob S.e.w., Lipinskaya, Tatsiana, Lukas, Juliane, Marchini, Agnese, González Martínez, Ana Isabel, Masson, Laurence, Memedemin, Daniyar, Moghaddas, Seyed Daryoush, Monteiro, João, Mumladze, Levan, Naddafi, Rahmat, Năvodaru, Ion, Olsson, Karin H., Onikura, Norio, Paganelli, Daniele, Pavia, Richard Thomas, Perdikaris, Costas, Pickholtz, Renanel, Pietraszewski, Dariusz, Povž, Meta, Preda, Cristina, Ristovska, Milica, Rosíková, Karin, Santos, José Maria, Semenchenko, Vitaliy, Senanan, Wansuk, Simonović, Predrag, Smeti, Evangelia, Števove, Barbora, Švolíková, Kristína, Ta, Kieu Anh T., Tarkan, Ali Serhan, Top, Nildeniz, Tricarico, Elena, Uzunova, Eliza, Vardakas, Leonidas, Verreycken, Hugo, Zięba, Grzegorz, Mendoza, Roberto, Copp, Gordon H., Vilizzi, Lorenzo, Wei, Hui, Li, Shan, Piria, Marina, Al-faisal, Abbas J., Almeida, David, Atique, Usman, Al-wazzan, Zainab, Bakiu, Rigers, Bašić, Tea, Bui, Thuyet D., Canning-clode, João, Castro, Nuno, Chaichana, Ratcha, Çoker, Tülin, Dashinov, Dimitriy, Ekmekçi, F.güler, Erős, Tibor, Ferincz, Árpád, Ferreira, Teresa, Giannetto, Daniela, Gilles, Allan S., Głowacki, Łukasz, Goulletquer, Philippe, Interesova, Elena, Iqbal, Sonia, Jakubčinová, Katarína, Kanongdate, Kamalaporn, Kim, Jeong-eun, Kopecký, Oldřich, Kostov, Vasil, Koutsikos, Nicholas, Kozic, Sebastian, Kristan, Petra, Kurita, Yoshihisa, Lee, Hwang-goo, Leuven, Rob S.e.w., Lipinskaya, Tatsiana, Lukas, Juliane, Marchini, Agnese, González Martínez, Ana Isabel, Masson, Laurence, Memedemin, Daniyar, Moghaddas, Seyed Daryoush, Monteiro, João, Mumladze, Levan, Naddafi, Rahmat, Năvodaru, Ion, Olsson, Karin H., Onikura, Norio, Paganelli, Daniele, Pavia, Richard Thomas, Perdikaris, Costas, Pickholtz, Renanel, Pietraszewski, Dariusz, Povž, Meta, Preda, Cristina, Ristovska, Milica, Rosíková, Karin, Santos, José Maria, Semenchenko, Vitaliy, Senanan, Wansuk, Simonović, Predrag, Smeti, Evangelia, Števove, Barbora, Švolíková, Kristína, Ta, Kieu Anh T., Tarkan, Ali Serhan, Top, Nildeniz, Tricarico, Elena, Uzunova, Eliza, Vardakas, Leonidas, Verreycken, Hugo, Zięba, Grzegorz, and Mendoza, Roberto
- Abstract
Environmental changes due to non-native species introductions and translocations are a global concern. Whilst understanding the causes of bioinvasions is important, there is need for decision-support tools that facilitate effective communication of the potential risks of invasive non-native species to stakeholders. Decision-support tools have been developed mostly in English language only, which increases linguistic uncertainty associated with risk assessments undertaken by assessors not of English mother tongue and who need to communicate outcomes to local stakeholders. To reduce language-based uncertainty, the ‘ecology-of-language’ paradigm was applied when developing the Aquatic Species Invasiveness Screening Kit (AS-ISK), a decision-support tool that offers 32 languages in which to carry out screenings and communicate outcomes to stakeholders. Topics discussed include uncertainty related to language-specific issues encountered during the AS-ISK translation and the potential benefits of a multilingual decision-support tool for reducing linguistic uncertainty and enhancing communication between scientists, environmental managers, policy and decision makers.
- Published
- 2021
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18. Speaking their language – Development of a multilingual decision-support tool for communicating invasive species risks to decision makers and stakeholders
- Author
-
Copp, Gordon H., primary, Vilizzi, Lorenzo, additional, Wei, Hui, additional, Li, Shan, additional, Piria, Marina, additional, Al-Faisal, Abbas J., additional, Almeida, David, additional, Atique, Usman, additional, Al-Wazzan, Zainab, additional, Bakiu, Rigers, additional, Bašić, Tea, additional, Bui, Thuyet D., additional, Canning-Clode, João, additional, Castro, Nuno, additional, Chaichana, Ratcha, additional, Çoker, Tülin, additional, Dashinov, Dimitriy, additional, Ekmekçi, F. Güler, additional, Erős, Tibor, additional, Ferincz, Árpád, additional, Ferreira, Teresa, additional, Giannetto, Daniela, additional, Gilles, Allan S., additional, Głowacki, Łukasz, additional, Goulletquer, Philippe, additional, Interesova, Elena, additional, Iqbal, Sonia, additional, Jakubčinová, Katarína, additional, Kanongdate, Kamalaporn, additional, Kim, Jeong-Eun, additional, Kopecký, Oldřich, additional, Kostov, Vasil, additional, Koutsikos, Nicholas, additional, Kozic, Sebastian, additional, Kristan, Petra, additional, Kurita, Yoshihisa, additional, Lee, Hwang-Goo, additional, Leuven, Rob S.E.W., additional, Lipinskaya, Tatsiana, additional, Lukas, Juliane, additional, Marchini, Agnese, additional, González Martínez, Ana Isabel, additional, Masson, Laurence, additional, Memedemin, Daniyar, additional, Moghaddas, Seyed Daryoush, additional, Monteiro, João, additional, Mumladze, Levan, additional, Naddafi, Rahmat, additional, Năvodaru, Ion, additional, Olsson, Karin H., additional, Onikura, Norio, additional, Paganelli, Daniele, additional, Pavia, Richard Thomas, additional, Perdikaris, Costas, additional, Pickholtz, Renanel, additional, Pietraszewski, Dariusz, additional, Povž, Meta, additional, Preda, Cristina, additional, Ristovska, Milica, additional, Rosíková, Karin, additional, Santos, José Maria, additional, Semenchenko, Vitaliy, additional, Senanan, Wansuk, additional, Simonović, Predrag, additional, Smeti, Evangelia, additional, Števove, Barbora, additional, Švolíková, Kristína, additional, Ta, Kieu Anh T., additional, Tarkan, Ali Serhan, additional, Top, Nildeniz, additional, Tricarico, Elena, additional, Uzunova, Eliza, additional, Vardakas, Leonidas, additional, Verreycken, Hugo, additional, Zięba, Grzegorz, additional, and Mendoza, Roberto, additional
- Published
- 2021
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19. Semiconductor Templates for the Fabrication of Nano-Objects
- Author
-
Eymery, Joël, primary, Masson, Laurence, additional, Sahaf, Houda, additional, and Hanbücken, Margrit, additional
- Published
- 2011
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20. Magnetic anisotropy of one-dimensional Co nanostructures
- Author
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Daher Mansour, Michel, primary, Parret, Romain, additional, Cheynis, Fabien, additional, Petit, Matthieu, additional, Choueikani, Fadi, additional, Michez, Lisa, additional, and Masson, Laurence, additional
- Published
- 2020
- Full Text
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21. Edge-On Self-Assembly of Tetra-bromoanthracenyl-porphyrin on Silver Surfaces
- Author
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Kalashnyk, Nataliya, primary, Daher Mansour, Michel, additional, Pijeat, Joffrey, additional, Plamont, Rémi, additional, Bouju, Xavier, additional, Balaban, Teodor Silviu, additional, Campidelli, Stéphane, additional, Masson, Laurence, additional, and Clair, Sylvain, additional
- Published
- 2020
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22. Quality of life after breast-conserving therapy and adjuvant radiotherapy for non-low-risk ductal carcinoma in situ (BIG 3-07/TROG 07.01): 2-year results of a randomised, controlled, phase 3 trial
- Author
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King, Madeleine T, primary, Link, Emma K, additional, Whelan, Tim J, additional, Olivotto, Ivo A, additional, Kunkler, Ian, additional, Westenberg, Antonia Helen, additional, Gruber, Guenther, additional, Schofield, Penny, additional, Chua, Boon H, additional, Phillips, Claire, additional, Bryant, Guy, additional, Westenberg, Helen, additional, Purohit, Om Pra-Kesh, additional, Ahern, Verity, additional, Graham, Peter, additional, Akra, Mohamed, additional, McArdle, Orla, additional, O'Brien, Peter, additional, Ludbrook, Jane, additional, Harvey, Jennifer, additional, Maduro, John H, additional, Gabelle-Flandin, Isabelle, additional, Kirkove, Carine, additional, Bedi, Carolyn, additional, Martin, Joseph, additional, Vu, Tony, additional, Muanza, Theirry, additional, Neal, Anthony, additional, Courdi, Adel, additional, Thariat, Juliette, additional, Rakovitch, Eileen, additional, Daniels, Laurien, additional, van Hezewijk, Marjan, additional, Cwajna, Wlasyslawa, additional, Roelstraete, Adelheid, additional, van Baardwijk, Angela, additional, Russel, Nicola, additional, Koch, Anne, additional, Croke, Jennifer, additional, Locke, Imogen, additional, Jeal, Peter, additional, Walker, Quenten, additional, Thuraisingham, Kandeepeepan, additional, Chauduri, Anupam, additional, Joseph, David, additional, Taylor, Mandy, additional, Vanderkam, Sabine, additional, Woo, Tony, additional, Tang, Johann, additional, Yassa, Michael, additional, Wai, Elaine, additional, Hewitt, Susan, additional, Mahmood, Shazia, additional, Gilmore, Jennifer, additional, Ofi, Bolante, additional, Bahl, Amit, additional, Vujovic, Olga, additional, Yu, Edward, additional, Le, Duc, additional, Kong, Iwa, additional, Nichol, Alan, additional, Bijker, Nina, additional, Delaney, Geoff, additional, Feigen, Malcolm, additional, Lim, Adeline, additional, Chao, Michael, additional, Latham, Margaret, additional, Algurafi, Hafiz, additional, Tausch, Christoph, additional, Khoo, Eric, additional, Leung, Sam, additional, Taylor, Karen, additional, Senthi, Sasha, additional, Stevens, Andrea, additional, Chaudhuri, Abhro, additional, Cleator, Susan, additional, Brunt, Adrian Murray, additional, Babington, Scott, additional, Christie, David, additional, Zwahlen, Daniel, additional, Schratzenstaller, Ulrich, additional, Masson, Laurence, additional, Storey, Nicola, additional, Kumar, Eshwar, additional, Sherwin, Liz, additional, Weytjens, Reinhilde, additional, Ravi, Sharma, additional, Lawton, Patricia, additional, Angell, Ruth, additional, Round, Glenys, additional, Allen, Angela, additional, Thotathil, Ziad, additional, Anthes, Margaret, additional, Reuter, Christiane, additional, Pettit, Laura, additional, Zissiadis, Yvonne, additional, Elder, Christine, additional, Verbeek-de Kanter, Antoinette, additional, Lirette, Andree, additional, Plasswilm, Ludwig, additional, Spooner, David, additional, Hoar, Fiona, additional, Mohamed, Islam, additional, Lossl, Kristina, additional, Loo, Vivienne, additional, Richetti, Antonella, additional, Evans, Tamasin, additional, Hennessy, Aisling, additional, El-Mallah, Medhat, additional, Skala, Marketa, additional, Awad, Raef, additional, Germain, Isabelle, additional, Mitine, Carine, additional, Van Parijs, Hilde, additional, Churn, Mark, additional, Walji, Nawaz, additional, Francis, Michael, additional, Stellamans, Karin, additional, Gruber, Gunther, additional, Ivaldi, Giovanni, additional, Alhasso, Abdulla, additional, Kenny, Lizbeth, additional, Tiver, Ken, additional, Griffin, Matthew, additional, Lamoury, Gillian, additional, Trovo, Marco, additional, Algufarfi, Hafiz, additional, Lah, Minjae, additional, Carruthers, Scott, additional, Papadatos, George, additional, Paardekooper, Gabriel, additional, Persic, Mojca, additional, and Lavery, Bernadette, additional
- Published
- 2020
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23. Nanoscale investigation of Si nanoribbon growth on Ag(110)
- Author
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Daher Mansour, Michel, primary, Parret, Romain, additional, and Masson, Laurence, additional
- Published
- 2018
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24. Formation of silicene on silver: Strong interaction between Ag and Si
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Prévot, Geoffroy, Bernard, Romain, Cruguel, Hervé, Curcella, Alberto, Lazzeri, Michele, Leoni, Thomas, Masson, Laurence, Ranguis, Alain, Borensztein, Yves, Physico-chimie et dynamique des surfaces (INSP-E6), Institut des Nanosciences de Paris (INSP), Université Pierre et Marie Curie - Paris 6 (UPMC)-Centre National de la Recherche Scientifique (CNRS)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Centre National de la Recherche Scientifique (CNRS), Institut de minéralogie, de physique des matériaux et de cosmochimie (IMPMC), Muséum national d'Histoire naturelle (MNHN)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut de recherche pour le développement [IRD] : UR206-Centre National de la Recherche Scientifique (CNRS), Aix Marseille Université (AMU), Labex Matisse, ANR-11-IDEX-0004,SUPER,Sorbonne Universités à Paris pour l'Enseignement et la Recherche(2011), and Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut de recherche pour le développement [IRD] : UR206-Muséum national d'Histoire naturelle (MNHN)-Centre National de la Recherche Scientifique (CNRS)
- Subjects
[PHYS]Physics [physics] ,optical reflectance ,scanning tunnelling microscopy ,silicene ,density functional theory ,X-ray diffraction - Abstract
International audience; The real-time formation of Si single layers on Ag(110) and Ag(111) has been investigated at different temperatures, by a combination of scanning tunnelling microscopy, grazing incidence X-ray diffraction, optical differential reflectance spectroscopy and density functional theory. It is shown that the reactivity of the Ag substrate with the Si atoms is important. The formation of Si nanoribbons on Ag(110) is accompanied by a missing-row reconstruction of the Ag surface, and the removed Ag atoms form additional islands. The mechanism of Si island formation on Ag(111) involves the insertion of single Si atoms within the Ag top layer and the exchange with Ag atoms. The released Ag atoms diffuse to steps edges and form new Ag fingers. This strong interaction between Si and Ag atoms with possible alloying, questions the actual structures of the different Si phases observed on Ag(110) and Ag(111), and usually attributed to silicene single layers.
- Published
- 2016
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25. Si Nanoribbons on Ag(110) Studied by GIXD, STM, and DFT: Evidence of a Pentamer Chain Structure
- Author
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Prevot, Geoffroy, Hogan, Conor, Leoni, Thomas, Bernard, Romain, Moyen, Eric, and Masson, Laurence
- Subjects
GIXD ,Ag(110) ,STM ,nanoribbon ,silicene ,DFT - Abstract
We report a combined grazing incidence x-ray diffraction (GIXD), scanning tunneling microscopy (STM), and density-functional theory (DFT) study which clearly elucidates the atomic structure of the Si nanoribbons grown on the missing-row reconstructed Ag(110) surface. Our study allows us to discriminate between the theoretical models published in the literature, including the most stable atomic configurations and those based on a missing-row reconstructed Ag(110) surface. GIXD measurements unambiguously validate the pentamer model grown on the reconstructed surface, obtained from DFT. This pentamer atomistic model accurately matches the high-resolution STM images of the Si nanoribbons adsorbed on Ag(110). Our study closes the long-debated atomic structure of the Si nanoribbons grown on Ag(110) and definitively excludes a honeycomb structure similar to that of freestanding silicene.
- Published
- 2016
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26. Erratum: Large differences in the optical properties of a single layer of Si on Ag(110) compared to silicene [Phys. Rev. B 89, 245410 (2014)]
- Author
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Borensztein, Yves, primary, Prévot, Geoffroy, additional, and Masson, Laurence, additional
- Published
- 2017
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- View/download PDF
27. Publisher’s Note: Si Nanoribbons on Ag(110) Studied by Grazing-Incidence X-Ray Diffraction, Scanning Tunneling Microscopy, and Density-Functional Theory: Evidence of a Pentamer Chain Structure [Phys. Rev. Lett. 117 , 276102 (2016)]
- Author
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Prévot, Geoffroy, primary, Hogan, Conor, additional, Leoni, Thomas, additional, Bernard, Romain, additional, Moyen, Eric, additional, and Masson, Laurence, additional
- Published
- 2017
- Full Text
- View/download PDF
28. KCl ultra-thin films with polar and non-polar surfaces grown on Si(111)7x7
- Author
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Beinik, Igor, Barth, Clemens, Hanbücken, Margrit, Masson, Laurence, Centre Interdisciplinaire de Nanoscience de Marseille (CINaM), and Aix Marseille Université (AMU)-Centre National de la Recherche Scientifique (CNRS)
- Subjects
[PHYS]Physics [physics] ,DESORPTION ,ADSORPTION ,SUBSTRATE ,NACL ,IONIC-CRYSTAL ,ATOMIC-RESOLUTION ,MICROSCOPY ,[SPI.NANO]Engineering Sciences [physics]/Micro and nanotechnologies/Microelectronics ,CHARGE ,KINETICS ,AU(111) - Abstract
International audience; The growth of ultra-thin KCl films on the Si(111)7 3 7 reconstructed surface has been investigated as a function of KCl coverage and substrate temperature. The structure and morphology of the films were characterized by means of scanning tunneling microscopy (STM) under ultra-high vacuum (UHV) conditions. Detailed analysis of the atomically resolved STM images of islands grown at room and high temperatures (400 K–430 K) revealed the presence of KCl(001) and KCl(111) islands with the ratio between both structures depending on the growth temperature. At room temperature, the growth of the first layer, which covers the initial Si(111)7 3 7 surface, contains double/triple atomic layers of KCl(001) with a small fraction of KCl(111) islands. The high temperature growth promotes the appearance of large KCl(111) areas, which are built up by three atomic layers. At room and high temperatures, flat and atomically well-defined ultra-thin KCl films can be grown on the Si(111)7 3 7 substrate. The formation of the above mentioned (111) polar films is interpreted as a result of the thermally activated dissociative adsorption of KCl molecules on Si(111)7 3 7, which produces an excess of potassium on the Si surface.
- Published
- 2015
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- View/download PDF
29. Si Nanoribbons on Ag(110) Studied by Grazing-Incidence X-Ray Diffraction, Scanning Tunneling Microscopy, and Density-Functional Theory: Evidence of a Pentamer Chain Structure
- Author
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Prévot, Geoffroy, primary, Hogan, Conor, additional, Leoni, Thomas, additional, Bernard, Romain, additional, Moyen, Eric, additional, and Masson, Laurence, additional
- Published
- 2016
- Full Text
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30. Magnetic properties of self-organized Co dimer nanolines on Si/Ag(110)
- Author
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Michez, Lisa, primary, Chen, Kai, additional, Cheynis, Fabien, additional, Leroy, Frédéric, additional, Ranguis, Alain, additional, Jamgotchian, Haik, additional, Hanbücken, Margrit, additional, and Masson, Laurence, additional
- Published
- 2015
- Full Text
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31. (Invited) Si Ultrathin Films on Silver Surfaces: An Intriguing Epitaxial System
- Author
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Leoni, Thomas, primary, Bernard, Romain, additional, Ranguis, Alain, additional, Borensztein, Yves, additional, Prévot, Geoffroy, additional, and Masson, Laurence, additional
- Published
- 2014
- Full Text
- View/download PDF
32. Large differences in the optical properties of a single layer of Si on Ag(110) compared to silicene
- Author
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Borensztein, Yves, primary, Prévot, Geoffroy, additional, and Masson, Laurence, additional
- Published
- 2014
- Full Text
- View/download PDF
33. Growth of Si ultrathin films on silver surfaces: Evidence of an Ag(110) reconstruction induced by Si
- Author
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Bernard, Romain, primary, Leoni, Thomas, additional, Wilson, Axel, additional, Lelaidier, Tony, additional, Sahaf, Houda, additional, Moyen, Eric, additional, Assaud, Loïc, additional, Santinacci, Lionel, additional, Leroy, Frédéric, additional, Cheynis, Fabien, additional, Ranguis, Alain, additional, Jamgotchian, Haik, additional, Becker, Conrad, additional, Borensztein, Yves, additional, Hanbücken, Margrit, additional, Prévot, Geoffroy, additional, and Masson, Laurence, additional
- Published
- 2013
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34. Modeling round goby Neogobius melanostomus range expansion in a Canadian river system
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Brownscombe, Jacob, primary, Masson, Laurence, additional, Beresford, David, additional, and Fox, Michael, additional
- Published
- 2012
- Full Text
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35. Nanopores: A Novel Self-Ordered Sub-10 nm Nanopore Template for Nanotechnology (Adv. Mater. 37/2012)
- Author
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Moyen, Eric, primary, Santinacci, Lionel, additional, Masson, Laurence, additional, Wulfhekel, Wulf, additional, and Hanbücken, Margrit, additional
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- 2012
- Full Text
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36. A Novel Self‐Ordered Sub‐10 nm Nanopore Template for Nanotechnology
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Moyen, Eric, primary, Santinacci, Lionel, additional, Masson, Laurence, additional, Wulfhekel, Wulf, additional, and Hanbücken, Margrit, additional
- Published
- 2012
- Full Text
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37. Changes in the diet of a recovering Eurasian otter population between the 1970s and 2010
- Author
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Almeida, David, primary, Copp, Gordon H., additional, Masson, Laurence, additional, Miranda, Rafael, additional, Murai, Mizuki, additional, and Sayer, Carl D., additional
- Published
- 2012
- Full Text
- View/download PDF
38. Anodic 3D nanostructuring for tailored applications
- Author
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Moyen, Eric, primary, Santinacci, Lionel, additional, Masson, Laurence, additional, Sahaf, Houda, additional, Macé, Magali, additional, Loï, N.A., additional, Assaud, c, additional, Hanbü, Margrit, additional, and cken, N.A., additional
- Published
- 2012
- Full Text
- View/download PDF
39. Functionalisation through periodically arranged nanostructures
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Sahaf, Houda, primary, Moyen, Eric, additional, Macé, Magali, additional, Masson, Laurence, additional, Hanbü, Margrit, additional, cken, N.A., additional, Gerhard, Lukas, additional, and Wulfhekel, Wulf, additional
- Published
- 2012
- Full Text
- View/download PDF
40. Large-Scale Ordered Plastic Nanopillars for Quantitative Live-Cell Imaging
- Author
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Sengupta, Kheya, primary, Moyen, Eric, additional, Macé, Magali, additional, Benoliel, Anne-Marie, additional, Pierres, Anne, additional, Thibaudau, Frank, additional, Masson, Laurence, additional, Limozin, Laurent, additional, Bongrand, Pierre, additional, and Hanbücken, Margrit, additional
- Published
- 2009
- Full Text
- View/download PDF
41. Atomic structures of Si() surface during silane UHV-CVD
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F. Thibaudau, L. Masson, Centre Interdisciplinaire de Nanoscience de Marseille (CINaM), Aix Marseille Université (AMU)-Centre National de la Recherche Scientifique (CNRS), and MASSON, Laurence
- Subjects
Silicon ,Hydrogen ,Annealing (metallurgy) ,Nucleation ,Analytical chemistry ,chemistry.chemical_element ,Crystal growth ,02 engineering and technology ,Chemical vapor deposition ,01 natural sciences ,law.invention ,chemistry.chemical_compound ,law ,0103 physical sciences ,Materials Chemistry ,010306 general physics ,ComputingMilieux_MISCELLANEOUS ,Surfaces and Interfaces ,021001 nanoscience & nanotechnology ,Condensed Matter Physics ,Silane ,[PHYS.COND.CM-MS] Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci] ,Surfaces, Coatings and Films ,Crystallography ,chemistry ,[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci] ,Scanning tunneling microscope ,0210 nano-technology - Abstract
Si(1 1 1) homoepitaxy using silane in ultra-high vacuum chemical vapor deposition conditions has been studied with scanning tunneling microscopy during growth at high temperatures (460–560 °C). We have especially been interested in the atomic structure of the growing surface. This latter exhibits different structures as a function of growth temperature. For low temperature, there appears a disordered phase which corresponds to the migration of SiH species on Si(1 1 1)1×1 partially hydrogenated. At high temperature, the conventional 7×7 structure is observed. For intermediate temperatures, a (√3×√3) R 30° structure covers the surface. The surface structures have also been studied during annealing at the growth temperature. The disordered phase is rapidly converted into the 7×7 and the (√3×√3) R 30° structures. The (√3×√3) R 30° areas slowly transform at the time scale of our experiments into 7×7 reconstruction. We discuss the role of hydrogen in the behavior of the growing surface structures.
- Published
- 2002
- Full Text
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42. AAO-based nanoreservoir arrays: A quick and easy support for TEM characterization
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Houda Sahaf, F. Bedu, Margrit Hanbücken, Laurence Masson, Magali Macé, Eric Moyen, Centre de recherche de la matière condensée et des nanosciences (CRMCN), Université de la Méditerranée - Aix-Marseille 2-Université Paul Cézanne - Aix-Marseille 3-Centre National de la Recherche Scientifique (CNRS), Centre Interdisciplinaire de Nanoscience de Marseille (CINaM), Aix Marseille Université (AMU)-Centre National de la Recherche Scientifique (CNRS), Centre National de la Recherche Scientifique (CNRS)-Aix Marseille Université (AMU), and MASSON, Laurence
- Subjects
Fabrication ,Materials science ,General Physics and Astronomy ,Nanoparticle ,Nanotechnology ,02 engineering and technology ,021001 nanoscience & nanotechnology ,01 natural sciences ,[PHYS.COND.CM-MS] Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci] ,Characterization (materials science) ,chemistry.chemical_compound ,chemistry ,Transmission electron microscopy ,0103 physical sciences ,Aluminium oxide ,[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci] ,Sample preparation ,Nanometre ,010306 general physics ,0210 nano-technology ,Deposition (law) ,ComputingMilieux_MISCELLANEOUS - Abstract
Large-scale arrays of calibrated, nanometer sized reservoirs are prepared by adapting the well-established electrochemical method used so far for the preparation of anodic aluminium oxide (AAO) membranes. The bottom plane of the assembly is prepared to be transparent for high-energy electrons, enabling their use as a universal sample support for transmission electron microscopy studies of nanoparticles. The nanoreservoir substrates can be cleaned under ultra-high-vacuum conditions and filled, by evaporating different materials. Filled nanoreservoirs can locally be sealed with a thin carbon layer using focused-ion-beam–induced deposition (FIBID). Nanoparticles, grow at various adsorption places on the walls and bottom planes inside the nanoreservoirs. They can be characterized by transmission electron microscopy (TEM) without further sample preparation in different crystallographic directions. Due to the dense array-arrangement of the reservoirs, very good statistics can already be obtained on one single sample. The controlled fabrication of the nanoreservoir array and first TEM results obtained on Au nanoparticles before and after sealing of the reservoirs, are presented.
- Published
- 2010
43. Electrical monitoring of organic crystal phase transition using MoS 2 field effect transistor.
- Author
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Boulet I, Pascal S, Bedu F, Ozerov I, Ranguis A, Leoni T, Becker C, Masson L, Matkovic A, Teichert C, Siri O, Attaccalite C, Huntzinger JR, Paillet M, Zahab A, and Parret R
- Abstract
Hybrid van der Waals heterostructures made of 2D materials and organic molecules exploit the high sensitivity of 2D materials to all interfacial modifications and the inherent versatility of the organic compounds. In this study, we are interested in the quinoidal zwitterion/MoS
2 hybrid system in which organic crystals are grown by epitaxy on the MoS2 surface and reorganize in another polymorph after thermal annealing. By means of field-effect transistor measurements recorded in situ all along the process, atomic force microscopy and density functional theory calculations we demonstrate that the charge transfer between quinoidal zwitterions and MoS2 strongly depends on the conformation of the molecular film. Remarkably, both the field effect mobility and the current modulation depth of the transistors remain unchanged which opens up promising prospects for efficient devices based on this hybrid system. We also show that MoS2 transistors enable fast and accurate detection of structural modifications that occur during phases transitions of the organic layer. This work highlights that MoS2 transistors are remarkable tools for on-chip detection of molecular events occurring at the nanoscale, which paves the way for the investigation of other dynamical systems., Competing Interests: There are no conflicts to declare., (This journal is © The Royal Society of Chemistry.)- Published
- 2023
- Full Text
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44. KCl ultra-thin films with polar and non-polar surfaces grown on Si(111)7 × 7.
- Author
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Beinik I, Barth C, Hanbücken M, and Masson L
- Abstract
The growth of ultra-thin KCl films on the Si(111)7 × 7 reconstructed surface has been investigated as a function of KCl coverage and substrate temperature. The structure and morphology of the films were characterized by means of scanning tunneling microscopy (STM) under ultra-high vacuum (UHV) conditions. Detailed analysis of the atomically resolved STM images of islands grown at room and high temperatures (400 K-430 K) revealed the presence of KCl(001) and KCl(111) islands with the ratio between both structures depending on the growth temperature. At room temperature, the growth of the first layer, which covers the initial Si(111)7 × 7 surface, contains double/triple atomic layers of KCl(001) with a small fraction of KCl(111) islands. The high temperature growth promotes the appearance of large KCl(111) areas, which are built up by three atomic layers. At room and high temperatures, flat and atomically well-defined ultra-thin KCl films can be grown on the Si(111)7 × 7 substrate. The formation of the above mentioned (111) polar films is interpreted as a result of the thermally activated dissociative adsorption of KCl molecules on Si(111)7 × 7, which produces an excess of potassium on the Si surface.
- Published
- 2015
- Full Text
- View/download PDF
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