The computational modeling of electrochemical interfaces and their applications in electrocatalysis has attracted great attention in recent years. While tremendous progress has been made in this area, however, the accurate atomistic descriptions at the electrode/electrolyte interfaces remain a great challenge. The Computational Hydrogen Electrode (CHE) method and continuum modeling of the solvent and electrolyte interactions form the basis for most of these methodological developments. Several posterior corrections have been added to the CHE method to improve its accuracy and widen its applications. The most recently developed grand canonical potential approaches with the embedded diffuse layer models have shown considerable improvement in ...
AbstractCharged interfaces are physical phenomena found in various natural systems and artificial de...
A major step in the development of (electro) catalysis would be the possibility to estimate accurate...
A major step in the development of (electro)catalysis would be the possibility to estimate accuratel...
Electrode potential is the key factor for controlling electrocatalytic reactions at electrochemical ...
The last decade has witnessed tremendous progress in the development of computer simulation based on...
International audienceElectrified interfaces play a prime role in energy technologies, from batterie...
Abstract The rational design of electrocatalysis has emerged as one of the most thriving means for m...
Electrosorption of solvated species at metal electrodes is a most fundamental class of processes in ...
Electrocatalysis plays a key role in sustainable energy conversion and storage. Although tremendous ...
Electrochemical interfaces present an extraordinarily complex reaction environment and several, ofte...
We discuss grand canonical simulations based on density-functional theory to study the thermodynamic...
Computer simulations are a useful tool to describe physical and chemical processes. However, the sta...
International audienceElectrified interfaces play a central role in energy technologies, from batter...
Properties of solid-liquid interfaces are of immense importance for electrocatalytic and electrochem...
Properties of solid-liquid interfaces are of immense importance for electrocatalytic and electrochem...
AbstractCharged interfaces are physical phenomena found in various natural systems and artificial de...
A major step in the development of (electro) catalysis would be the possibility to estimate accurate...
A major step in the development of (electro)catalysis would be the possibility to estimate accuratel...
Electrode potential is the key factor for controlling electrocatalytic reactions at electrochemical ...
The last decade has witnessed tremendous progress in the development of computer simulation based on...
International audienceElectrified interfaces play a prime role in energy technologies, from batterie...
Abstract The rational design of electrocatalysis has emerged as one of the most thriving means for m...
Electrosorption of solvated species at metal electrodes is a most fundamental class of processes in ...
Electrocatalysis plays a key role in sustainable energy conversion and storage. Although tremendous ...
Electrochemical interfaces present an extraordinarily complex reaction environment and several, ofte...
We discuss grand canonical simulations based on density-functional theory to study the thermodynamic...
Computer simulations are a useful tool to describe physical and chemical processes. However, the sta...
International audienceElectrified interfaces play a central role in energy technologies, from batter...
Properties of solid-liquid interfaces are of immense importance for electrocatalytic and electrochem...
Properties of solid-liquid interfaces are of immense importance for electrocatalytic and electrochem...
AbstractCharged interfaces are physical phenomena found in various natural systems and artificial de...
A major step in the development of (electro) catalysis would be the possibility to estimate accurate...
A major step in the development of (electro)catalysis would be the possibility to estimate accuratel...