High investment costs and a dependence on noble metal catalysts currently obstruct the large‐scale implementation of proton exchange membrane water electrolyzers (PEMWEs) for converting fluctuating green electricity into chemical energy via water splitting. In this context, this work presents a high‐performing and stable non‐noble metal catalyst for the hydrogen evolution reaction (HER), consisting of [Mo3S13]2− clusters supported on nitrogen doped carbon nanotubes (NCNTs). Strikingly, a significant electrochemically induced activation of the Mo3S13‐NCNT catalyst at high current densities is observed in full cell configuration, enabling a remarkable current density of 4 A cm−2 at a cell voltage of 2.36 V. To the authors’ knowledge, this is ...
International audienceInterconversion of water and hydrogen in unitized regenerative fuel cells is a...
International audienceInterconversion of water and hydrogen in unitized regenerative fuel cells is a...
International audienceInterconversion of water and hydrogen in unitized regenerative fuel cells is a...
High investment costs and a dependence on noble metal catalysts currently obstruct the large‐scale i...
High investment costs and a dependence on noble metal catalysts currently obstruct the large‐scale i...
7Water is the most abundant, renewable source of hydrogen on our planet. Appropriate catalytic mater...
Water is the most abundant, renewable source of hydrogen on our planet. Appropriate catalytic materi...
Electrolysis of water by electricity generated from renewable energy sources is promising sustainabl...
Proton exchange membrane water electrolysis (PEMWE) is a promising technology to produce high-purity...
Water splitting (WS) has attracted increasing attention for producing highly pure hydrogen and oxyge...
International audienceInterconversion of water and hydrogen in unitized regenerative fuel cells is a...
International audienceInterconversion of water and hydrogen in unitized regenerative fuel cells is a...
International audienceInterconversion of water and hydrogen in unitized regenerative fuel cells is a...
International audienceInterconversion of water and hydrogen in unitized regenerative fuel cells is a...
Water splitting (WS) has attracted increasing attention for producing highly pure hydrogen and oxyge...
International audienceInterconversion of water and hydrogen in unitized regenerative fuel cells is a...
International audienceInterconversion of water and hydrogen in unitized regenerative fuel cells is a...
International audienceInterconversion of water and hydrogen in unitized regenerative fuel cells is a...
High investment costs and a dependence on noble metal catalysts currently obstruct the large‐scale i...
High investment costs and a dependence on noble metal catalysts currently obstruct the large‐scale i...
7Water is the most abundant, renewable source of hydrogen on our planet. Appropriate catalytic mater...
Water is the most abundant, renewable source of hydrogen on our planet. Appropriate catalytic materi...
Electrolysis of water by electricity generated from renewable energy sources is promising sustainabl...
Proton exchange membrane water electrolysis (PEMWE) is a promising technology to produce high-purity...
Water splitting (WS) has attracted increasing attention for producing highly pure hydrogen and oxyge...
International audienceInterconversion of water and hydrogen in unitized regenerative fuel cells is a...
International audienceInterconversion of water and hydrogen in unitized regenerative fuel cells is a...
International audienceInterconversion of water and hydrogen in unitized regenerative fuel cells is a...
International audienceInterconversion of water and hydrogen in unitized regenerative fuel cells is a...
Water splitting (WS) has attracted increasing attention for producing highly pure hydrogen and oxyge...
International audienceInterconversion of water and hydrogen in unitized regenerative fuel cells is a...
International audienceInterconversion of water and hydrogen in unitized regenerative fuel cells is a...
International audienceInterconversion of water and hydrogen in unitized regenerative fuel cells is a...