International audienceHigh-potential multicopper oxidases (MCOs) are excellent catalysts able to perform the oxygen reduction reaction (ORR) at remarkably low overpotentials. Moreover, MCOs are able to interact directly with the electrode surfaces via direct electron transfer (DET), that makes them the most commonly used electrocatalysts for oxygen reduction in biofuel cells. The central question in MCO electrocatalysis is whether the type 1 (T1) Cu is the primary electron acceptor site from the electrode, or whether electrons can be transferred directly to the trinuclear copper cluster (TNC), bypassing the rate-limiting intramolecular electron transfer step from the T1 site. Here, using sitedirected mutagenesis and electrochemical methods ...
In the past few decades, there has been growing interest in using metalloenzymes for improved biomas...
In the past few decades, there has been growing interest in using metalloenzymes for improved biomas...
Fuel cell draws increasing attention because of its high theoretical efficiency (over 90%). However,...
International audienceHigh-potential multicopper oxidases (MCOs) are excellent catalysts able to per...
Multicopper oxidases (MCOs) utilize an electron shuttling Type 1 Cu (T1) site in conjunction with a ...
Multicopper oxidases (MCOs) utilize an electron shuttling Type 1 Cu (T1) site in conjunction with a ...
We report a general kinetics model for catalytic dioxygen reduction on multicopper oxidase (MCO) cat...
International audienceBioinspired transition-metal catalysts seek to mimic the specific active site ...
We report a general kinetics model for catalytic dioxygen reduction on multicopper oxidase (MCO) cat...
ABSTRACT: The multicopper oxidases (MCOs) are the family of enzymes that catalyze the 4-electron red...
The catalytic cycle of multicopper oxidases (MCOs) involves intramolecular electron transfer (IET) f...
Fuel cell draws increasing attention because of its high theoretical efficiency (over 90%). However,...
The catalytic cycle of multicopper oxidases (MCOs) involves intramol. electron transfer (IET) from t...
We investigated properties of direct electron transfer (DET)-type bioelectrocatalysis of recombinant...
In the past few decades, there has been growing interest in using metalloenzymes for improved biomas...
In the past few decades, there has been growing interest in using metalloenzymes for improved biomas...
In the past few decades, there has been growing interest in using metalloenzymes for improved biomas...
Fuel cell draws increasing attention because of its high theoretical efficiency (over 90%). However,...
International audienceHigh-potential multicopper oxidases (MCOs) are excellent catalysts able to per...
Multicopper oxidases (MCOs) utilize an electron shuttling Type 1 Cu (T1) site in conjunction with a ...
Multicopper oxidases (MCOs) utilize an electron shuttling Type 1 Cu (T1) site in conjunction with a ...
We report a general kinetics model for catalytic dioxygen reduction on multicopper oxidase (MCO) cat...
International audienceBioinspired transition-metal catalysts seek to mimic the specific active site ...
We report a general kinetics model for catalytic dioxygen reduction on multicopper oxidase (MCO) cat...
ABSTRACT: The multicopper oxidases (MCOs) are the family of enzymes that catalyze the 4-electron red...
The catalytic cycle of multicopper oxidases (MCOs) involves intramolecular electron transfer (IET) f...
Fuel cell draws increasing attention because of its high theoretical efficiency (over 90%). However,...
The catalytic cycle of multicopper oxidases (MCOs) involves intramol. electron transfer (IET) from t...
We investigated properties of direct electron transfer (DET)-type bioelectrocatalysis of recombinant...
In the past few decades, there has been growing interest in using metalloenzymes for improved biomas...
In the past few decades, there has been growing interest in using metalloenzymes for improved biomas...
In the past few decades, there has been growing interest in using metalloenzymes for improved biomas...
Fuel cell draws increasing attention because of its high theoretical efficiency (over 90%). However,...