International audienceCrystalline and amorphous transition metal chalcogenides such as MoS 2 are currently recognized as state-of-the-art non-precious transition metal catalysts for the hydrogen evolution reaction (HER). Nevertheless, despite numerous studies dedicated to their electrocatalytic activities, the exact nature of the active sites as well as their interaction with interfacial water remain largely elusive. In this work, amorphous and crystalline MoS 2 catalysts were prepared by electrodeposition and chemical exfoliation respectively, and compared with other Mo-based compounds. Herein, we show that all those compounds exhibit two reduction mechanisms in low proton concentration: the proton reduction occurring at low overpotential ...
Transition metal dichalcogenides are cheap and earth-abundant candidates for the replacement of prec...
Molybdenum sulfide structures, particularly amorphous MoS<sub>3</sub> nanoparticles, are promising m...
Molybdenum sulfides are very attractive noble-metal-free electrocatalysts for the hydrogen evolution...
International audienceCrystalline and amorphous transition metal chalcogenides such as MoS2 are curr...
Molybdenum disulfide (MoS2) and related transition metal chalcogenides can replace expensive preciou...
Molybdenum disulfide (MoS 2) and related transition metal chalcogenides can replace expensive precio...
Molybdenum disulfide (MoS2) is a highly promising catalyst for the hydrogen evolution reaction (HER)...
Molybdenum disulfide (MoS2) is a highly promising catalyst for the hydrogen evolution reaction (HER)...
Molybdenum disulfide (MoS2)-based materials have emerged as promising catalysts for hydrogen evoluti...
The demand for clean and sustainable energy has set the stage for the development of affordable and ...
Providing energy for a population projected to reach 9 billion people within the middle of this cent...
Earth-abundant MoS2 is widely reported as a promising HER electrocatalyst in acidic solutions, but i...
Dans une société dépendante des énergies fossiles, la production d'hydrogène à partir de l'eau par é...
In a society dependent on fossil fuels, the production of hydrogen from water by electrocatalysis (H...
MoS2 becomes an efficient and durable nonprecious-metal electrocatalyst for the hydrogen evolution r...
Transition metal dichalcogenides are cheap and earth-abundant candidates for the replacement of prec...
Molybdenum sulfide structures, particularly amorphous MoS<sub>3</sub> nanoparticles, are promising m...
Molybdenum sulfides are very attractive noble-metal-free electrocatalysts for the hydrogen evolution...
International audienceCrystalline and amorphous transition metal chalcogenides such as MoS2 are curr...
Molybdenum disulfide (MoS2) and related transition metal chalcogenides can replace expensive preciou...
Molybdenum disulfide (MoS 2) and related transition metal chalcogenides can replace expensive precio...
Molybdenum disulfide (MoS2) is a highly promising catalyst for the hydrogen evolution reaction (HER)...
Molybdenum disulfide (MoS2) is a highly promising catalyst for the hydrogen evolution reaction (HER)...
Molybdenum disulfide (MoS2)-based materials have emerged as promising catalysts for hydrogen evoluti...
The demand for clean and sustainable energy has set the stage for the development of affordable and ...
Providing energy for a population projected to reach 9 billion people within the middle of this cent...
Earth-abundant MoS2 is widely reported as a promising HER electrocatalyst in acidic solutions, but i...
Dans une société dépendante des énergies fossiles, la production d'hydrogène à partir de l'eau par é...
In a society dependent on fossil fuels, the production of hydrogen from water by electrocatalysis (H...
MoS2 becomes an efficient and durable nonprecious-metal electrocatalyst for the hydrogen evolution r...
Transition metal dichalcogenides are cheap and earth-abundant candidates for the replacement of prec...
Molybdenum sulfide structures, particularly amorphous MoS<sub>3</sub> nanoparticles, are promising m...
Molybdenum sulfides are very attractive noble-metal-free electrocatalysts for the hydrogen evolution...