12 results on '"Marjeta Macek Krzmanc"'
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2. Nanogallium-poly(L-lactide) Composites with Contact Antibacterial Action
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Mario Kurtjak, Marjeta Maček Kržmanc, Matjaž Spreitzer, and Marija Vukomanović
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gallium nanoparticles ,polylactide film ,antibacterial composite ,contact-based antimicrobial ,Pseudomonas aeruginosa ,human keratinocytes ,Pharmacy and materia medica ,RS1-441 - Abstract
In diverse biomedical and other applications of polylactide (PLA), its bacterial contamination and colonization are unwanted. For this reason, this biodegradable polymer is often combined with antibacterial agents or fillers. Here, we present a new solution of this kind. Through the process of simple solvent casting, we developed homogeneous composite films from 28 ± 5 nm oleic-acid-capped gallium nanoparticles (Ga NPs) and poly(L-lactide) and characterized their detailed morphology, crystallinity, aqueous wettability, optical and thermal properties. The addition of Ga NPs decreased the ultraviolet transparency of the films, increased their hydrophobicity, and enhanced the PLA structural ordering during solvent casting. Albeit, above the glass transition, there is an interplay of heterogeneous nucleation and retarded chain mobility through interfacial interactions. The gallium content varied from 0.08 to 2.4 weight %, and films with at least 0.8% Ga inhibited the growth of Pseudomonas aeruginosa PAO1 in contact, while 2.4% Ga enhanced the effect of the films to be bactericidal. This contact action was a result of unwrapping the top film layer under biological conditions and the consequent bacterial contact with the exposed Ga NPs on the surface. All the tested films showed good cytocompatibility with human HaCaT keratinocytes and enabled the adhesion and growth of these skin cells on their surfaces when coated with poly(L-lysine). These properties make the nanogallium-polyl(L-lactide) composite a promising new polymer-based material worthy of further investigation and development for biomedical and pharmaceutical applications.
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- 2024
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3. Morphology Control of PbZrxTi1-xO3 Crystallites under Alkaline Hydrothermal Conditions
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Marjeta Maček Kržmanc, Zdravko Kutnjak, and Matjaž Spreitzer
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PbZrxTi1-xO3 ,hydrothermal synthesis ,ferroelectric particles ,perovskites ,Crystallography ,QD901-999 - Abstract
Outstanding ferroelectric and piezoelectric properties of PbZrxTi1-xO3 (PZT) make nano and sub-micrometer particles of this material interesting for future nanotechnological applications as well as for fundamental studies of ferroelectricity at the nanoscale. In the present work, the prospects of a new hydrothermal approach were explored to control the particle size, aggregation stage, and composition of the PZT with the target composition of Zr/Ti = 60/40 (x = 0.6). Starting with water-soluble Zr-, Ti-, and Pb-precursors, the PZT formation was examined in the broad base (KOH) concentration range. The PZT particle size and composition were governed by the ratio of KOH with respect to Pb and not by the absolute KOH concentration (cKOH). The incorporation of Zr into the PZT perovskite phase began to decline at KOH:Pb ≤ 1.7 and at KOH:Pb > 20. In the concentration range of 20 ≥ KOH:Pb > 1.5, the PZT particles adopted a cube-like shape, the size of which decreased with a decrease in the KOH:Pb ratio. The smallest (
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- 2022
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4. Plate-Like Bi4Ti3O12 Particles and their Topochemical Conversion to SrTiO3 Under Hydrothermal Conditions
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Alja Čontala, Marjeta Maček Kržmanc, and Danilo Suvorov
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Bi4Ti3O12 ,Aurivillius layered perovskites ,molten-salt synthesis ,plate-like Bi4Ti3O12 ,template plates ,topochemical conversion ,Chemistry ,QD1-999 - Abstract
Plate-like Bi4Ti3O12 particles were synthesized using a one-step, molten-salt method from Bi2O3 and TiO2 nanopowders at 800 °C. The reaction parameters that affect the crystal structure and morphology were identified and systematically investigated. The differences between various Bi4Ti3O12 plate-like particles were examined in terms of the ferroelectric-to-paraelectric phase transition and the photocatalytic activity for the degradation of Rhodamine B under UV-A light irradiation. The results encouraged us to conduct further testing of the as-prepared Bi4Ti3O12 plate-like particles as templates for the preparation of plate-like SrTiO3 perovskite particles using a topochemical conversion under hydrothermal conditions. The characteristics of the Bi4Ti3O12 plates and the reaction parameters for which the SrTiO3 preserved the shape of the initial Bi4Ti3O12 template particles were determined.
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- 2018
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5. Characterization of PMMA/BaTiO3 Composite Layers Through Printed Capacitor Structures for Microwave Frequency Applications
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Sami Myllymäki, Merja Teirikangas, Małgorzata Jakubowska, Jani Kallioinen, Marjeta Macek Krzmanc, Heli Jantunen, Omodara Gbotemi, Danilo Suvorov, Jari Juuti, and Marcin Słoma
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Permittivity ,Radiation ,Materials science ,Composite number ,Relative permittivity ,020206 networking & telecommunications ,02 engineering and technology ,Dielectric ,021001 nanoscience & nanotechnology ,Condensed Matter Physics ,law.invention ,chemistry.chemical_compound ,Capacitor ,chemistry ,law ,Barium titanate ,0202 electrical engineering, electronic engineering, information engineering ,Dissipation factor ,Electrical and Electronic Engineering ,Composite material ,0210 nano-technology ,Microwave - Abstract
This paper presents the extraction of microwave properties of low-temperature cured inorganic composite materials based on barium titanate (BaTiO3). These composite materials exhibit attractive features such that when the volume fraction of the filler contents varied, its electrical properties of high permittivity and moderately low loss tangent can be manipulated to suit different areas of applications. For the extraction of the permittivity and the loss tangent, three different ink particles were developed and printed on the top of interdigital-shaped microwave capacitor. The properties of the inks were extracted from measured results through computer simulations. The obtained results were verified with several types of interdigital capacitor structures of different fingers and linewidths. The effect of the thickness of the ink layer materials on the top of the capacitor structures was likewise investigated. The results show relative permittivity ( $\varepsilon _{r}$ ) values of 30, 25, and 27 for composite layers printed using inks with Pr. A shape at 67.4 wt% (percentage by weight), Pr. B shape at 66.3 wt%, and Pr. C shape at 67.1 wt% of BaTiO3, respectively, at 2 GHz. Corresponding loss tangents (tan $\delta $ ) were 0.065, 0.040, and 0.025. The dielectric properties of the composite materials are influenced by the thickness variation of the ink layers on the capacitor structures. This novel capacitor composite materials would be a promising candidate for printed application in mobile telecommunication operations, especially in the frequency range of 0.5–3 GHz.
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- 2018
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6. Microwave composite dielectrics based on magnesium titanates
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O. V. Ovchar, Matjaz Valant, Anatolii Belous, Danilo Suvorov, Marjeta Macek-Krzmanc, and Dmitrii Durylin
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Materials science ,Zinc borate ,Magnesium ,Spinel ,Composite number ,Mineralogy ,chemistry.chemical_element ,Sintering ,Dielectric ,engineering.material ,chemistry.chemical_compound ,chemistry ,Chemical engineering ,Phase (matter) ,Materials Chemistry ,Ceramics and Composites ,engineering ,Electroceramics - Abstract
Composite dielectrics comprising the crystal phases of Co-doped magnesium titanates MgTiO3 and Mg2TiO4, and CaTiO3 were examined with regard to their phase composition and its effect on the microwave dielectric properties. In the case of MgTiO3-based composites an increase in the Co concentration results in increasing amount of an additional phase MgTi2O5, which significantly deteriorates the product Q × f. In contrast, the materials based on the spinel Mg2TiO4 never contain MgTi2O5, and consequently demonstrate excellent Q × f magnitude which is as high as 100,000 GHz at low Co doping. At higher Co concentration, however, an additional phase MgTiO3 appears in these materials that is accompanied by a slight reduction of the Q × f magnitude. A slight addition (5 wt.%) of the glass-forming zinc borate into the Mg2TiO4-based composite allows a noticeable reduction of its sintering temperature by 150–200 °C without a significant degradation of its dielectric properties.
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- 2007
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7. The correlation between the structure and the dielectric properties of KxBa1−xGa2−xGe2+xO8 ceramics
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Marjeta Macek Krzmanc, Anton Meden, and Danilo Suvorov
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Permittivity ,Phase transition ,Materials science ,Analytical chemistry ,Mineralogy ,Sintering ,Dielectric ,Atmospheric temperature range ,visual_art ,Materials Chemistry ,Ceramics and Composites ,visual_art.visual_art_medium ,Ceramic ,Temperature coefficient ,Solid solution - Abstract
A study of K x Ba 1− x Ga 2− x Ge 2+ x O 8 ceramics revealed that these solid solutions undergo a monoclinic-to-monoclinic P 2 1 / a ⇔ C 2/ m phase transition. The temperature of this phase transition decreases with an increase in x , in a similar way to the sintering temperature, which decreases from 1100 °C ( x = 0) to 970 °C ( x = 1). The temperature of the P 2 1 / a ⇔ C 2/ m phase transition is below the sintering temperatures of K x Ba 1− x Ga 2− x Ge 2+ x O 8 (0.67 ≤ x ≤ 1) solid solutions, whereas the compositions at lower x ( x = 0.4 and 0) remain in the P 2 1 / a modification over a wide temperature range above the sintering temperature. Compared to the C 2/ m modification of K x Ba 1− x Ga 2− x Ge 2+ x O 8 (0.67 ≤ x ≤ 1), with a permittivity of 6.2–6.9, the P 2 1 / a modifications exhibit permittivities of 5.9–7.0 and three-to-eight times higher Q × f values of ∼100,000 GHz (at ∼12 GHz). The temperature coefficient of the resonant frequency is ∼−25 ppm/K, regardless of the composition.
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- 2007
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8. The synthesis and microwave dielectric properties of SrxBa1−xAl2Si2O8 and CayBa1−yAl2Si2O8 ceramics
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Matjaz Valant, Danilo Suvorov, and Marjeta Macek Krzmanc
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Permittivity ,Materials science ,Aluminosilicate ,X-ray crystallography ,Materials Chemistry ,Ceramics and Composites ,Analytical chemistry ,Sintering ,Mineralogy ,Dielectric loss ,Dielectric ,Electroceramics ,Solid solution - Abstract
Dense, single-phase Sr x Ba 1− x Al 2 Si 2 O 8 (0 ≤ x ≤ 1) and Ca y Ba 1− y Al 2 Si 2 O 8 (0 ≤ y ≤ 0.05) ceramics were synthesized and then structurally and dielectrically characterized. The substitution of Ba with Ca or Sr promotes the transformation of hexacelsian to monocelsian. The substitution with Ca led to a more-than-two-times-lower Q × f value at y = 0.05, whereas the Q × f value of the Sr 0.05 Ba 0.95 Al 2 Si 2 O 8 ( x = 0.05) was only 5% lower than the Q × f value of the BaAl 2 Si 2 O 8 , which exhibited Q × f values of 70,600 and 77,700 GHz when sintered at 1500 °C for 12 and 40 h, respectively. The improvement in the Q × f value with the prolongation of the heat-treatment time, which can be attributed to an increase in the Al:Si ordering, was also noticed for other Sr x Ba 1− x Al 2 Si 2 O 8 solid solutions. In contrast to the dielectric losses, the permittivity ( ɛ = 7.3 and 7.2 at 1 MHz and 10.5 GHz, respectively) did not change significantly with the composition and the sintering conditions.
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- 2007
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9. High-Q Microwave Dielectric Materials Based on the Spinel Mg2TiO4
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D. A. Durilin, Marjeta Macek Krzmanc, Matjaz Valant, Anatolii Belous, Danilo Suvorov, and O. V. Ovchar
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Materials science ,Spinel ,Doping ,Composite number ,Analytical chemistry ,Sintering ,Mineralogy ,Dielectric ,engineering.material ,Microstructure ,visual_art ,Materials Chemistry ,Ceramics and Composites ,engineering ,visual_art.visual_art_medium ,Ceramic ,Microwave - Abstract
Composite ceramics based on the spinel Mg2TiO4 were prepared by a conventional mixed-oxide route. To achieve the temperature stabilization of the dielectric constant, each of the composites was added with 7 mol% CaTiO3. The effect of the substitution of isovalent Co for Mg on the microstructure and the microwave dielectric properties of the composite ceramics was also investigated. A maximum Q×f value of around 150–160 THz was obtained for the undoped Mg2TiO4, whereas a reduced Q×f value was observed for an increase in the Co concentration in the system (1−x)Mg2TiO4−xCo2TiO4. Upon doping with 7 mol% CaTiO3, the Q×f value passed through a maximum with increasing Co concentration. Adding ZnO–B2O3 to the composite system based on Co-doped Mg2TiO4 resulted in a reduction of the sintering temperature by 150°–200°C without any significant degradation in the Q×f value.
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- 2006
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10. The homogeneity range and the microwave dielectric properties of the BaZn2Ti4O11 ceramics
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Matjaz Valant, Anatolii Belous, O. V. Ovchar, and Marjeta Macek-Krzmanc
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Barium oxide ,Materials science ,Scanning electron microscope ,Analytical chemistry ,Mineralogy ,Crystal structure ,Dielectric ,chemistry.chemical_compound ,chemistry ,visual_art ,X-ray crystallography ,Materials Chemistry ,Ceramics and Composites ,visual_art.visual_art_medium ,Ceramic ,Electroceramics ,Solid solution - Abstract
Ceramics with a composition close to BaZn 2 Ti 4 O 11 were synthesized according to various substitutional mechanisms in order to verify an existence of a homogeneity range in the vicinity of this composition. Structural and microstructural investigations showed that the crystal structure of BaZn 2 Ti 4 O 11 was formed in the homogeneity range corresponding to the formula BaZn 2 − x Ti 4 O 11 − x (0 x 2 − x Ti 4 O 11 − x (0 x τ f = −30 ppm/K and high Q × f values, which increased from ∼68,000 GHz at x = 0 to ∼83,000 GHz at x = 0.05. Structurally, the deficiency of Zn in BaZn 2 − x Ti 4 O 11 − x (0 x 2 Ti 4 O 11 -based materials on the microwave dielectric properties was also investigated. A presence of small amounts of ZnO, BaTiO 3 , hollandite-type solid solutions (Ba x Zn x Ti 8 − x O 16 ) and BaTi 4 O 9 caused a decrease in Q × f values.
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- 2006
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11. Sub-Solidus Synthesis and Microwave Dielectric Characterization of Plagioclase Feldspars
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Matjaz Valant, Boštjan Jančar, Marjeta Macek Krzmanc, and Danilo Suvorov
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Analytical chemistry ,Calcium aluminosilicate ,Mineralogy ,Solidus ,Dielectric ,engineering.material ,Feldspar ,Anorthite ,chemistry.chemical_compound ,Albite ,chemistry ,visual_art ,Materials Chemistry ,Ceramics and Composites ,engineering ,visual_art.visual_art_medium ,Plagioclase ,Solid solution - Abstract
NaxCa1� xAl2� xSi21xO8 plagioclase solid solutions (0rxr1) were synthesized under sub-solidus conditions using a solid-state reaction technique. The plagioclase formation and the sintering temperature decreased with an increase in x from the anorthite (CaAl2Si2O8; x 5 0) to the albite (NaAlSi3O8; x 5 1). Microwave (MW) dielectric measurements revealed that
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- 2005
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12. A structural and dielectric characterization of NaxCa1−xAl2−xSi2+xO8 (x=0 and 1) ceramics
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Matjaz Valant, Marjeta Macek Krzmanc, and Danilo Suvorov
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Materials science ,Analytical chemistry ,Mineralogy ,Dielectric ,engineering.material ,Feldspar ,Anorthite ,Albite ,visual_art ,X-ray crystallography ,Materials Chemistry ,Ceramics and Composites ,visual_art.visual_art_medium ,engineering ,Plagioclase ,Temperature coefficient ,Solid solution - Abstract
Albite and anorthite, the end-members of the plagioclase feldspar structural family (Na x Ca 1− x Al 2− x Si 2+ x O 8 ), were synthesized under sub-solidus conditions using the solid-state reaction technique. The structural investigations revealed that both the plagioclase-phase formation and sintering temperature decreased from the anorthite (CaAl 2 Si 2 O 8 ; x = 0), which started to form at 1000 °C and sintered at 1300 °C, to the albite (NaAlSi 3 O 8 ; x = 1), which started to form at 800 °C and sintered at 1000 °C. Dielectric measurements in the microwave (MW) frequency region revealed that a high temperature (1500 °C) and an extended heat-treatment time were needed to obtain low-loss anorthite ceramics (Qxf = 10 000–12 000 GHz). In contrast, the albite attained Qxf = 11 200 GHz at a lower temperature (1025 °C). A temperature coefficient of resonant frequency ( τ f ) close to zero (−5 ppm/°C) was another advantage of the albite over the anorthite, which exhibited τ f = −130 ppm/°C. The dielectric measurements also revealed that a slow cooling rate considerably improved the Qxf values of the anorthite and albite.
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- 2005
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