This perspective article delves into the realm of bio-inspired catalysis, highlighting the valuable insights gleaned from enzymatic systems for the design of advanced electrocatalysts. We focus here on three key aspects to mimic: the structure of enzymatic active sites, the essential functions to enable catalytic activity as well as key elementary steps of reaction mechanisms employed by enzymes to ensure maximum efficiency and selectivity. Our research group's contributions to these areas are highlighted, including the synthesis and catalytic activity of cobalt(III) pyridinethiolate complexes, the exploration of bimetallic sites mimicking biological carbon dioxide reductases and of all-ferrous Fe4S4 clusters as mimics of FeP active sites, ...
Mononuclear metalloenzymes in nature can function in cooperation with precisely positioned redox-act...
Biomimetic catalysis is an important research field, as a better understanding of nature´s powerful ...
Mononuclear metalloenzymes in nature can function in cooperation with precisely positioned redox-act...
This account reviews our recent research activities in the field of CO2 reduction. We discuss here t...
This account reviews our recent research activities in the field of CO2 reduction. We discuss here t...
This account reviews our recent research activities in the field of CO2 reduction. We discuss here t...
A number of redox enzymes function as excellent electrocatalysts when attached to electrodes or cond...
International audienceThe active sites of hydrogenases have inspired the design of molecular catalys...
International audienceThe active sites of hydrogenases have inspired the design of molecular catalys...
International audienceThe active sites of hydrogenases have inspired the design of molecular catalys...
International audienceThe active sites of hydrogenases have inspired the design of molecular catalys...
A number of redox enzymes function as excellent electrocatalysts when attached to electrodes or cond...
The development of artificial photosynthetic technologies able to produce solar-fuels from CO2 reduc...
Biomimetic catalysis is an important research field, as a better understanding of nature´s powerful ...
Electrochemical conversions at fuel cell electrodes are complex processes. In particular, the oxyg...
Mononuclear metalloenzymes in nature can function in cooperation with precisely positioned redox-act...
Biomimetic catalysis is an important research field, as a better understanding of nature´s powerful ...
Mononuclear metalloenzymes in nature can function in cooperation with precisely positioned redox-act...
This account reviews our recent research activities in the field of CO2 reduction. We discuss here t...
This account reviews our recent research activities in the field of CO2 reduction. We discuss here t...
This account reviews our recent research activities in the field of CO2 reduction. We discuss here t...
A number of redox enzymes function as excellent electrocatalysts when attached to electrodes or cond...
International audienceThe active sites of hydrogenases have inspired the design of molecular catalys...
International audienceThe active sites of hydrogenases have inspired the design of molecular catalys...
International audienceThe active sites of hydrogenases have inspired the design of molecular catalys...
International audienceThe active sites of hydrogenases have inspired the design of molecular catalys...
A number of redox enzymes function as excellent electrocatalysts when attached to electrodes or cond...
The development of artificial photosynthetic technologies able to produce solar-fuels from CO2 reduc...
Biomimetic catalysis is an important research field, as a better understanding of nature´s powerful ...
Electrochemical conversions at fuel cell electrodes are complex processes. In particular, the oxyg...
Mononuclear metalloenzymes in nature can function in cooperation with precisely positioned redox-act...
Biomimetic catalysis is an important research field, as a better understanding of nature´s powerful ...
Mononuclear metalloenzymes in nature can function in cooperation with precisely positioned redox-act...