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Conductance Channels in a Single-Entity Enzyme. [PDF]
Colombo RNP +2 more
europepmc +1 more source
Recent Advances in Laccase Production: Challenges and Future Perspectives. [PDF]
Jiao M +7 more
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Nanobioelectrocatalysis Using Human Liver Microsomes and Cytochrome P450 Bactosomes: Pyrenyl-Nanocarbon Electrodes. [PDF]
Premaratne G +3 more
europepmc +1 more source
Solid-supported polymer-lipid hybrid membrane for bioelectrochemistry of a membrane redox enzyme.
Catania R +5 more
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Principles of direct (mediator free) bioelectrocatalysis
Bioelectrochemistry, 2012Current mini-review is devoted to principles and focuses on the most important trends of bioelectrocatalysis, i.e. acceleration of electrochemical reactions with the use of biological catalysts. The history of direct bioelectrocatalysis, starting from electrochemistry of redox enzymes is presented.
Arkady Karyakin
exaly +3 more sources
Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences, 1981
Abstract Bioelectrocatalysis is concerned with the use of biological materials as catalysts for electrochemical processes. Of particular value in this context are those enzymes that catalyse oxidations and reductions. These often have or require cofactors, other proteins or coenzymes, involved in the electron transfer steps.
Hugh Allen Oliver Hill, I. J. Higgins
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Abstract Bioelectrocatalysis is concerned with the use of biological materials as catalysts for electrochemical processes. Of particular value in this context are those enzymes that catalyse oxidations and reductions. These often have or require cofactors, other proteins or coenzymes, involved in the electron transfer steps.
Hugh Allen Oliver Hill, I. J. Higgins
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Protein engineering in bioelectrocatalysis
Current Opinion in Biotechnology, 2003Electrochemistry of redox proteins is a broadly applicable technology with important applications in biosensors, biofuel cells and chemical syntheses. Escalating attention in this area is driven by remarkable progress in designing efficient interfaces for transferring electrons between electrode surfaces and redox proteins. Research in interface design
Tuck Seng, Wong, Ulrich, Schwaneberg
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Bioelectrocatalysis at carbon nanotubes
2020This paper summarizes several examples of enzyme immobilization and bioelectrocatalysis at carbon nanotubes (CNTs). CNTs offer substantial improvements on the overall performance of amperometric enzyme electrodes mainly due to their unique structural, mechanical and electronic properties such as metallic, semi-conducting and superconducting electron ...
Bollella P., Katz E.
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Bioelectrocatalysis of Pyruvate
ECS Meeting Abstracts, 2009Abstract not Available.
Shelley Minteer, Daria Sokic-Lazic
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