International audienceMolybdenum sulfides are very attractive noble-metal-free electrocatalysts for the hydrogen evolution reaction (HER) from water. The atomic structure and identity of the catalytically active sites have been well established for crystalline molybdenum disulfide (c-MoS2) but not for amorphous molybdenum sulfide (a-MoSx), which exhibits significantly higher HER activity compared to its crystalline counterpart. Here we show that HER-active a-MoSx, prepared either as nanoparticles or as films, is a molecular-based coordination polymer consisting of discrete [Mo3S13]2- building blocks. Of the three terminal disulfide (S22-) ligands within these clusters, two are shared to form the polymer chain. The third one remains free and...
Molybdenum sulfide, MoSx, is considered as attractive hydrogen evolution catalyst since it is free o...
Abstract Hydrogen has received significant attention as a promising future energy carrier due to its...
Identifying and understanding the active sites responsible for reaction turnover is critical to deve...
International audienceMolybdenum sulfides are very attractive noble-metal-free electrocatalysts for ...
Molybdenum sulfides are very attractive noble-metal-free electrocatalysts for the hydrogen evolution...
Molybdenum sulfides have attracted widespread attention as promising nonprecious-metal catalysts for...
Molybdenum sulfide, MoSx, is considered as attractive hydrogen evolution catalyst since it is free o...
Molybdenum disulfide (MoS 2) and related transition metal chalcogenides can replace expensive precio...
In this work, we studied a sulfur-rich molybdenum sulfide (MoS6) hydrogen evolution reaction (HER) c...
Molybdenumdisulfide(MoS2)and related transition metal chal-cogenides can replace expensive preciousm...
Electrocatalytic hydrogen production via water electrolysis is an environmentally-benign energy tech...
We present a scalable wet chemical synthesis for a catalytically active nanostructured amorphous mol...
Molybdenum sulfide, MoSx, is considered as attractive hydrogen evolution catalyst since it is free o...
Abstract Hydrogen has received significant attention as a promising future energy carrier due to its...
Identifying and understanding the active sites responsible for reaction turnover is critical to deve...
International audienceMolybdenum sulfides are very attractive noble-metal-free electrocatalysts for ...
Molybdenum sulfides are very attractive noble-metal-free electrocatalysts for the hydrogen evolution...
Molybdenum sulfides have attracted widespread attention as promising nonprecious-metal catalysts for...
Molybdenum sulfide, MoSx, is considered as attractive hydrogen evolution catalyst since it is free o...
Molybdenum disulfide (MoS 2) and related transition metal chalcogenides can replace expensive precio...
In this work, we studied a sulfur-rich molybdenum sulfide (MoS6) hydrogen evolution reaction (HER) c...
Molybdenumdisulfide(MoS2)and related transition metal chal-cogenides can replace expensive preciousm...
Electrocatalytic hydrogen production via water electrolysis is an environmentally-benign energy tech...
We present a scalable wet chemical synthesis for a catalytically active nanostructured amorphous mol...
Molybdenum sulfide, MoSx, is considered as attractive hydrogen evolution catalyst since it is free o...
Abstract Hydrogen has received significant attention as a promising future energy carrier due to its...
Identifying and understanding the active sites responsible for reaction turnover is critical to deve...