1,747 results on '"Gooding, J. Justin"'
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52. Nanoconfinement Allows a Less Active Cascade Catalyst to Produce More C2+ Products in Electrochemical CO2 Reduction
53. Light-activated electrochemistry on alkyne-terminated Si(100) surfaces towards solution-based redox probes
54. Functional role of T-cell receptor nanoclusters in signal initiation and antigen discrimination
55. Nanoconfinement Allows a Less Active Cascade Catalyst to Produce More C2+ Products in Electrochemical CO2 Reduction
56. Heat-treated stainless steel felt as scalable anode material for bioelectrochemical systems
57. The study of interfacial processes using channel electrode systems
58. Nanopore blockade sensors for ultrasensitive detection of proteins in complex biological samples
59. Tuning the Mechanical Properties of Multiarm RAFT-Based Block Copolyelectrolyte Hydrogels via Ionic Cross-Linking for 3D Cell Cultures
60. Upconversion Nanoparticle-Based Cell Membrane-Coated cRGD Peptide Bioorthogonally Labeled Nanoplatform for Glioblastoma Treatment
61. A 3D bioprintable hydrogel with tuneable stiffness for exploring cells encapsulated in matrices of differing stiffnesses
62. Developing Chemical Sensors That Employ Consumer Electronics Has Pitfalls as well as Rewards
63. Self‐Propelled Initiative Collision at Microelectrodes with Vertically Mobile Micromotors
64. Advances in 3D Bioprinting for Cancer Biology and Precision Medicine: From Matrix Design to Application
65. Biomimetic Membranes in Biosensor Applications
66. Monolayer surface chemistry enables 2-colour single molecule localisation microscopy of adhesive ligands and adhesion proteins
67. Realizing 11.3% efficiency in PffBT4T-2OD fullerene organic solar cells via superior charge extraction at interfaces
68. Is Cu instability during the CO2 reduction reaction governed by the applied potential or the local CO concentration?
69. Introducing Stacking Faults into Three-Dimensional Branched Nickel Nanoparticles for Improved Catalytic Activity
70. Feasibility of Silicon Quantum Dots as a Biomarker for the Bioimaging of Tear Film
71. The Influence of Nanoconfinement on Electrocatalysis
72. Der Einfluss von Nanoconfinement auf die Elektrokatalyse
73. Synthetic Strategies to Enhance the Electrocatalytic Properties of Branched Metal Nanoparticles
74. A Transparent Semiconducting Surface for Capturing and Releasing Single Cells from a Complex Cell Mixture
75. Nanoconfinement Allows a Less Active Cascade Catalyst to Produce More C2+ Products in Electrochemical CO2 Reduction.
76. ACS Sensors Has Two New Editors
77. Intelligent Gold Nanoparticles with Oncogenic MicroRNA‐Dependent Activities to Manipulate Tumorigenic Environments for Synergistic Tumor Therapy
78. Optical Nanopore Sensors for Quantitative Analysis
79. Spiers Memorial Lecture. Next generation nanoelectrochemistry: the fundamental advances needed for applications
80. Engineering regioselectivity in the hydrosilylation of alkynes using heterobimetallic dual-functional hybrid catalysts
81. A calibration-free approach to detecting microRNA with DNA-modified gold coated magnetic nanoparticles as dispersible electrodes
82. Understanding and modelling the magnitude of the change in current of nanopore sensors
83. Statistical predictions on the encapsulation of single molecule binding pairs into sized-dispersed nanocontainers
84. A high-throughput 3D bioprinted cancer cell migration and invasion model with versatile and broad biological applicability
85. A guide to the design of magnetic particle imaging tracers for biomedical applications
86. The application of single molecule nanopore sensing for quantitative analysis
87. Electrochemical data mining: from information to knowledge: general discussion
88. How can we use the endocytosis pathways to design nanoparticle drug-delivery vehicles to target cancer cells over healthy cells?
89. Highly efficient and stable Ru nanoparticle electrocatalyst for the hydrogen evolution reaction in alkaline conditions
90. Protein sensors based on reversible π–π stacking on basal plane HOPG electrodes
91. Biomolecule Attachment to Porous Silicon
92. Dispersible Electrodes: An Approach to Developing Sensing Devices that can Quickly Detect Ultralow Concentrations of Analyte
93. Optimising porous silicon Bragg reflectors for narrow spectral resonances.
94. Gold-coated magnetic nanoparticles as “dispersible electrodes” – Understanding their electrochemical performance
95. The importance of interfacial design for the sensitivity of a label-free electrochemical immuno-biosensor for small organic molecules
96. Electrochemical impedance immunosensor based on gold nanoparticles and aryl diazonium salt functionalized gold electrodes for the detection of antibody
97. A high-throughput 3D bioprinted cancer cell migration and invasion model with versatile and broad biological applicability
98. Fundamental Science Still Needed to Drive Sensing Forward
99. Combining Nanoconfinement in Ag Core/Porous Cu Shell Nanoparticles with Gas Diffusion Electrodes for Improved Electrocatalytic Carbon Dioxide Reduction
100. Biomolecular binding under confinement: statistical predictions of steric influence in the absence of long‐distance interactions
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