The complexity of electrochemical interfaces has led to the development of several approximate density functional theory (DFT)-based schemes to study reaction thermodynamics and kinetics as a function of electrode potential. While fixed electrode potential conditions can be simulated with grand canonical ensemble DFT (GCE-DFT), various electrostatic corrections on canonical, constant charge DFT are often applied instead. In this work, we present a systematic derivation and analysis of the different electrostatic corrections on canonical DFT to understand their physical validity, implicit assumptions, and scope of applicability. Our work highlights the need to carefully address the suitability of a given model for the problem under study, es...
We have carried out a periodic Kohn-Sham density functional theory investigation of the pathways by ...
We discuss grand canonical simulations based on density-functional theory to study the thermodynamic...
International audienceAtomistic modelling of electrified interfaces remains a major issue for detail...
Properties of solid-liquid interfaces are of immense importance for electrocatalytic and electrochem...
Electrocatalysis plays a key role in sustainable energy conversion and storage. Although tremendous ...
Properties of solid-liquid interfaces are of immense importance for electrocatalytic and electrochem...
Electrochemical interfaces present an extraordinarily complex reaction environment and several, ofte...
First-principles calculations combining density-functional theory and continuum solvation models ena...
Progress in electrochemical technologies, such as automotive batteries, supercapacitors, and fuel ce...
Electrochemical interfaces present a serious challenge for atomistic modelling. Electrochemical ther...
In order to simulate electrochemical reactions in the framework of quantum chemical methods, density...
Potential not only governs the direction of electrochemical reactions, but also shapes the electroni...
Electrocatalysis plays a key role in sustainable energy conversion and storage. It is critical to mo...
Understanding the complex and inherently multi-scale interface between a charged electrode surface a...
A hybrid density–potential functional of an electrochemical interface that encompasses major effects...
We have carried out a periodic Kohn-Sham density functional theory investigation of the pathways by ...
We discuss grand canonical simulations based on density-functional theory to study the thermodynamic...
International audienceAtomistic modelling of electrified interfaces remains a major issue for detail...
Properties of solid-liquid interfaces are of immense importance for electrocatalytic and electrochem...
Electrocatalysis plays a key role in sustainable energy conversion and storage. Although tremendous ...
Properties of solid-liquid interfaces are of immense importance for electrocatalytic and electrochem...
Electrochemical interfaces present an extraordinarily complex reaction environment and several, ofte...
First-principles calculations combining density-functional theory and continuum solvation models ena...
Progress in electrochemical technologies, such as automotive batteries, supercapacitors, and fuel ce...
Electrochemical interfaces present a serious challenge for atomistic modelling. Electrochemical ther...
In order to simulate electrochemical reactions in the framework of quantum chemical methods, density...
Potential not only governs the direction of electrochemical reactions, but also shapes the electroni...
Electrocatalysis plays a key role in sustainable energy conversion and storage. It is critical to mo...
Understanding the complex and inherently multi-scale interface between a charged electrode surface a...
A hybrid density–potential functional of an electrochemical interface that encompasses major effects...
We have carried out a periodic Kohn-Sham density functional theory investigation of the pathways by ...
We discuss grand canonical simulations based on density-functional theory to study the thermodynamic...
International audienceAtomistic modelling of electrified interfaces remains a major issue for detail...