This account reviews our recent research activities in the field of CO2 reduction. We discuss here the potential of the bio-inspired approach for the design of electrocatalytic systems for small molecule transformation. Exploiting the billion years of evolution of natural systems, we illustrate the potential of bio-inspired strategies across multiple scales to design catalytic systems. We demonstrate in particular how the shape of biological systems as well as enzymatic active sites and their environment can constitute effective sources of inspiration for the design of electrocatalysts with improved performances.ISSN:0009-429
Biocatalysts, capable of efficiently transforming CO2 into other more reduced forms of carbon, offer...
The electrocatalytic reduction reaction of carbon dioxide (CO2RR) has gained significant attention a...
Abstract Researchers devote to design catalytic systems with higher activity, selectivity, and stabi...
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...
Environmental challenges associated with rising atmospheric CO2 concentrations and the promise of CO...
Environmental challenges associated with rising atmospheric CO2 concentrations and the promise of CO...
The development of artificial photosynthetic technologies able to produce solar-fuels from CO2 reduc...
This perspective article delves into the realm of bio-inspired catalysis, highlighting the valuable ...
Carbon dioxide (CO2) utilization/recycling for the production of chemicals and gaseous/liquid energy...
Carbon dioxide (CO2) utilization/recycling for the production of chemicals and gaseous/liquid energy...
Carbon dioxide (CO2) utilization/recycling for the production of chemicals and gaseous/liquid energy...
Carbon dioxide (CO2) utilization/recycling for the production of chemicals and gaseous/liquid energy...
Biocatalysts, capable of efficiently transforming CO2 into other more reduced forms of carbon, offer...
Through millions of years of evolution, Nature has accomplished the development of highly efficient ...
Biocatalysts, capable of efficiently transforming CO2 into other more reduced forms of carbon, offer...
The electrocatalytic reduction reaction of carbon dioxide (CO2RR) has gained significant attention a...
Abstract Researchers devote to design catalytic systems with higher activity, selectivity, and stabi...
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...
Environmental challenges associated with rising atmospheric CO2 concentrations and the promise of CO...
Environmental challenges associated with rising atmospheric CO2 concentrations and the promise of CO...
The development of artificial photosynthetic technologies able to produce solar-fuels from CO2 reduc...
This perspective article delves into the realm of bio-inspired catalysis, highlighting the valuable ...
Carbon dioxide (CO2) utilization/recycling for the production of chemicals and gaseous/liquid energy...
Carbon dioxide (CO2) utilization/recycling for the production of chemicals and gaseous/liquid energy...
Carbon dioxide (CO2) utilization/recycling for the production of chemicals and gaseous/liquid energy...
Carbon dioxide (CO2) utilization/recycling for the production of chemicals and gaseous/liquid energy...
Biocatalysts, capable of efficiently transforming CO2 into other more reduced forms of carbon, offer...
Through millions of years of evolution, Nature has accomplished the development of highly efficient ...
Biocatalysts, capable of efficiently transforming CO2 into other more reduced forms of carbon, offer...
The electrocatalytic reduction reaction of carbon dioxide (CO2RR) has gained significant attention a...
Abstract Researchers devote to design catalytic systems with higher activity, selectivity, and stabi...