Designing efficient electrocatalytic structures requires reliable guidelines. For this purpose, experimental approaches for the characterization of model electrodes in operando conditions are valuable. Reporting in Joule, Agnoli et al. showcase the determination of site-specific reaction onset potentials and Tafel slopes by using electrochemical scanning tunneling microscopy
International audienceWith the advent of non-noble metal catalysis for oxygen reduction reaction, th...
The structure of gas diffusion electrodes in fuel cells is complex: The porous electrode often cons...
Electrochemical Scanning Tunneling Microscopy (STM) is able to image the atomic structure of electro...
The relationship between the electrocatalytic properties of an electrode and its ability to transfer...
Despite being so large, many enzymes are not only excellent electrocatalysts - making possible chemi...
Electrochemical scanning tunneling microscopy (EC-STM) allows direct observation of surfacechanges a...
Abstract: Scanning tunneling microscopy (STM) has gained increasing attention in the field of electr...
The experimental gap existing between surface science and heterogeneous chemical kinetics applies al...
Combining computational and experimental methods is a powerful approach to understand the variables ...
M-N-C materials featuring M-N-x single site catalysts, where for example M = Co, Mg, or Fe coordinat...
A direct scanning tunneling microscopy ex-situ determination on the nanometer scale of the topograph...
The development of catalysts for the hydrogen evolution reaction is pivotal for the hydrogen economy...
To fully understand the mechanisms of electrochemical reac-tions and to apply these reactions to mod...
Funding Information: This work has been partially supported by the MIUR (PRIN 2017: Multi-e, 2017933...
The electrodes are crucial components for fuel cells, since this is where the electrochemical reacti...
International audienceWith the advent of non-noble metal catalysis for oxygen reduction reaction, th...
The structure of gas diffusion electrodes in fuel cells is complex: The porous electrode often cons...
Electrochemical Scanning Tunneling Microscopy (STM) is able to image the atomic structure of electro...
The relationship between the electrocatalytic properties of an electrode and its ability to transfer...
Despite being so large, many enzymes are not only excellent electrocatalysts - making possible chemi...
Electrochemical scanning tunneling microscopy (EC-STM) allows direct observation of surfacechanges a...
Abstract: Scanning tunneling microscopy (STM) has gained increasing attention in the field of electr...
The experimental gap existing between surface science and heterogeneous chemical kinetics applies al...
Combining computational and experimental methods is a powerful approach to understand the variables ...
M-N-C materials featuring M-N-x single site catalysts, where for example M = Co, Mg, or Fe coordinat...
A direct scanning tunneling microscopy ex-situ determination on the nanometer scale of the topograph...
The development of catalysts for the hydrogen evolution reaction is pivotal for the hydrogen economy...
To fully understand the mechanisms of electrochemical reac-tions and to apply these reactions to mod...
Funding Information: This work has been partially supported by the MIUR (PRIN 2017: Multi-e, 2017933...
The electrodes are crucial components for fuel cells, since this is where the electrochemical reacti...
International audienceWith the advent of non-noble metal catalysis for oxygen reduction reaction, th...
The structure of gas diffusion electrodes in fuel cells is complex: The porous electrode often cons...
Electrochemical Scanning Tunneling Microscopy (STM) is able to image the atomic structure of electro...