The climate change due to human activities stimulates the research on new energy resources. Hydrogen has attracted interest as a green carrier of high energy density. The sustainable production of hydrogen is achievable only by water electrolysis based on the hydrogen evolution reaction (HER). Graphitic materials are widely utilized in this technology in the role of conductive catalyst supports. Herein, by performing dynamic and steady-state electrochemical measurements in acidic and alkaline media, we investigated the bidirectional electrocatalysis of the HER and hydrogen oxidation reaction (HOR) on metal- and defect-free epigraphene (EG) grown on 4H silicon carbide (4HSiC) as a ground level of structural organization of general graphitic ...
Carbon is ubiquitous as an electrode material in electrochemical energy conversion devices. If used ...
Hydrogen is regarded as a key renewable energy source to meet future energy demands. Moreover, graph...
A major challenge in the development of electrocatalysts is to determine a detailed catalysis mechan...
The climate change due to human activities stimulates the research on new energy resources. Hydrogen...
The hydrogen evolution reaction (HER) is a fundamental process in electrocatalysis and plays an impo...
The hydrogen evolution reaction (HER) is a fundamental process in electrocatalysis and plays an impo...
Mono-, few-, and multilayer graphene is explored towards the electrochemical Hydrogen Evolution Reac...
The paucity of research on hydrogen evolution reaction (HER) under neutral conditions, which is a mo...
Microbial fuel cells (MFCs) are seen as a promising complementary technology to alleviate the expone...
Under the double pressures of both the energy crisis and environmental pollution, the exploitation a...
Under the double pressures of both the energy crisis and environmental pollution, the exploitation a...
By means of a combination of surface-science spectroscopies and theory, we investigate the mechanism...
Abstract Carbon‐based metal‐free catalysts for the hydrogen evolution reaction (HER) are essential f...
Abstract Water electrolysis is a sustainable and clean method to produce hydrogen fuel via hydrogen ...
We demonstrate hydrogen assisted growth of high quality epitaxial graphene on the C-face of 4H-SiC. ...
Carbon is ubiquitous as an electrode material in electrochemical energy conversion devices. If used ...
Hydrogen is regarded as a key renewable energy source to meet future energy demands. Moreover, graph...
A major challenge in the development of electrocatalysts is to determine a detailed catalysis mechan...
The climate change due to human activities stimulates the research on new energy resources. Hydrogen...
The hydrogen evolution reaction (HER) is a fundamental process in electrocatalysis and plays an impo...
The hydrogen evolution reaction (HER) is a fundamental process in electrocatalysis and plays an impo...
Mono-, few-, and multilayer graphene is explored towards the electrochemical Hydrogen Evolution Reac...
The paucity of research on hydrogen evolution reaction (HER) under neutral conditions, which is a mo...
Microbial fuel cells (MFCs) are seen as a promising complementary technology to alleviate the expone...
Under the double pressures of both the energy crisis and environmental pollution, the exploitation a...
Under the double pressures of both the energy crisis and environmental pollution, the exploitation a...
By means of a combination of surface-science spectroscopies and theory, we investigate the mechanism...
Abstract Carbon‐based metal‐free catalysts for the hydrogen evolution reaction (HER) are essential f...
Abstract Water electrolysis is a sustainable and clean method to produce hydrogen fuel via hydrogen ...
We demonstrate hydrogen assisted growth of high quality epitaxial graphene on the C-face of 4H-SiC. ...
Carbon is ubiquitous as an electrode material in electrochemical energy conversion devices. If used ...
Hydrogen is regarded as a key renewable energy source to meet future energy demands. Moreover, graph...
A major challenge in the development of electrocatalysts is to determine a detailed catalysis mechan...