For increasing scalability and reducing cost, transition metal dichalcogenides-based electrocatalysts presently have been proposed as substitutes for noble metals to generate hydrogen, but these alternatives usually suffer from inferior performance. Here, a Ravenala leaf-like WxC@WS2 heterostructure is grown via carbonizing WS2 nanotubes, whose outer walls being partially unzipped along with the Wx C “leaf-valves” attached to the inner tubes during the carbonization process. This heterostructure exhibits a catalytic activity for hydrogen evolution reaction with low overpotential of 146 mV at 10 mA cm−2 and Tafel slope of 61 mV per decade, outperforming the performance of WS2 nanotubes and WxC counterparts under the same condition. Density f...
The vast majority of the reported hydrogen evolution reaction (HER) electrocatalysts perform poorly ...
Abstract Promoting the intrinsic activity and accessibility of basal plane sites in 2D layered metal...
An efficient three-dimensional (3D) hybrid material of nitrogen-doped graphene sheets (N-RGO) suppor...
For increasing scalability and reducing cost, transition metal dichalcogenides-based electrocatalyst...
The rational design of Earth abundant electrocatalysts for efficiently catalyzing hydrogen evolution...
Transition metal dichalcogenides (TMDs), as one of potential electrocatalysts for hydrogen evolution...
Transition metal dichalcogenides (TMDs), such as MoS2 and WS2, are promising alternative non-noble m...
The demand for clean and sustainable energy has set the stage for the development of affordable and ...
Electrocatalytic hydrogen production at low overpotential is a promising route towards a clean and s...
The rational design of transition metal dichalcogenide electrocatalysts for efficiently catalyzing t...
Abstract Hydrogen is a highly efficient and clean renewable energy source and water splitting throug...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
Low-cost, layered transition-metal dichalcogenides (MX_2) based on molybdenum and tungsten have attr...
The hydrogen evolution reaction (HER) is a remarkable mechanism which yields the production of hydro...
Producción CientíficaUnderstanding the interaction of hydrogen with layered materials is crucial in ...
The vast majority of the reported hydrogen evolution reaction (HER) electrocatalysts perform poorly ...
Abstract Promoting the intrinsic activity and accessibility of basal plane sites in 2D layered metal...
An efficient three-dimensional (3D) hybrid material of nitrogen-doped graphene sheets (N-RGO) suppor...
For increasing scalability and reducing cost, transition metal dichalcogenides-based electrocatalyst...
The rational design of Earth abundant electrocatalysts for efficiently catalyzing hydrogen evolution...
Transition metal dichalcogenides (TMDs), as one of potential electrocatalysts for hydrogen evolution...
Transition metal dichalcogenides (TMDs), such as MoS2 and WS2, are promising alternative non-noble m...
The demand for clean and sustainable energy has set the stage for the development of affordable and ...
Electrocatalytic hydrogen production at low overpotential is a promising route towards a clean and s...
The rational design of transition metal dichalcogenide electrocatalysts for efficiently catalyzing t...
Abstract Hydrogen is a highly efficient and clean renewable energy source and water splitting throug...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
Low-cost, layered transition-metal dichalcogenides (MX_2) based on molybdenum and tungsten have attr...
The hydrogen evolution reaction (HER) is a remarkable mechanism which yields the production of hydro...
Producción CientíficaUnderstanding the interaction of hydrogen with layered materials is crucial in ...
The vast majority of the reported hydrogen evolution reaction (HER) electrocatalysts perform poorly ...
Abstract Promoting the intrinsic activity and accessibility of basal plane sites in 2D layered metal...
An efficient three-dimensional (3D) hybrid material of nitrogen-doped graphene sheets (N-RGO) suppor...