Understanding the dynamic process of interfacial charge transfer prior to chemisorption is crucial to the development of electrocatalysis. Recently, interfacial water has been highlighted in transferring protons through the electrode/electrolyte interface; however, the identification of the related structural configurations and their influences on the catalytic mechanism is largely complicated by the amorphous and mutable structure of the electrical double layer (EDL). To this end, sub-nanometric Pt electrocatalysts, potentially offering intriguing activity and featuring fully exposed atoms, are studied to uncover the elusive electrode/electrolyte interface via operando X-ray absorption spectroscopy during the hydrogen evolution reaction (H...
The electrocatalytic hydrogen evolution reaction (HER) is a highly promising green method for sustai...
The platinum-catalysed hydrogen evolution reaction (HER) generally shows poorer kinetics in alkaline...
Laterally nanostructured surfaces give rise to a new dimension of understanding and improving electr...
Understanding the dynamic process of interfacial charge transfer prior to chemisorption is crucial t...
Hydrogen evolution on platinum is a key reaction for electrocatalysis and sustainable energy storage...
Understanding the surface chemistry of electrocatalysts in operando can bring insight into the react...
Despite much study the mechanism of the hydrogen evolution reaction (HER) on Pt is still controversi...
Electrocatalysis plays an essential role in various clean energy technologies, including fuel cells ...
Efficient interfacial electrocatalysis requires rapid concerted proton–electron transfer (CPET) at t...
Achieving a molecular-level understanding of interfacial (photo)electrochemical processes is essenti...
The hydrogen evolution reaction (HER) constitutes one of the most important reactions in electrochem...
The hydrogen evolution reaction (HER) constitutes one of the most important reactions in electrochem...
Suppression of catalyst deactivation without compromising activity has been a long-standing yet elus...
Due to their importance for practical applications in energy conversion, resolving the kinetic issue...
Knowledge of the molecular composition and electronic structure of electrified solid-liquid interfac...
The electrocatalytic hydrogen evolution reaction (HER) is a highly promising green method for sustai...
The platinum-catalysed hydrogen evolution reaction (HER) generally shows poorer kinetics in alkaline...
Laterally nanostructured surfaces give rise to a new dimension of understanding and improving electr...
Understanding the dynamic process of interfacial charge transfer prior to chemisorption is crucial t...
Hydrogen evolution on platinum is a key reaction for electrocatalysis and sustainable energy storage...
Understanding the surface chemistry of electrocatalysts in operando can bring insight into the react...
Despite much study the mechanism of the hydrogen evolution reaction (HER) on Pt is still controversi...
Electrocatalysis plays an essential role in various clean energy technologies, including fuel cells ...
Efficient interfacial electrocatalysis requires rapid concerted proton–electron transfer (CPET) at t...
Achieving a molecular-level understanding of interfacial (photo)electrochemical processes is essenti...
The hydrogen evolution reaction (HER) constitutes one of the most important reactions in electrochem...
The hydrogen evolution reaction (HER) constitutes one of the most important reactions in electrochem...
Suppression of catalyst deactivation without compromising activity has been a long-standing yet elus...
Due to their importance for practical applications in energy conversion, resolving the kinetic issue...
Knowledge of the molecular composition and electronic structure of electrified solid-liquid interfac...
The electrocatalytic hydrogen evolution reaction (HER) is a highly promising green method for sustai...
The platinum-catalysed hydrogen evolution reaction (HER) generally shows poorer kinetics in alkaline...
Laterally nanostructured surfaces give rise to a new dimension of understanding and improving electr...