Urea-assisted water electrolysis possesses the prospective prospect for high-efficiency hydrogen production by replacing oxygen evolution reaction (OER) with thermodynamically more favorable urea oxidation reaction (UOR). Modulating the electronic structure of electrocatalysts through constructing metal-semiconductor heteminterface represents an effective strategy to promote the electrochemical performances. Herein, we construct a Mott-Schottky bifunctional electrocatalyst by in-situ growth of NiS/MoS2 hetero-nanoflowers on the conductive carbon cloth (CC) substrate (abbreviated as NiS/MoS2@CC hereafter) for both hydrogen evolution reaction (HER) and urea oxidation reaction (UOR). Thanks to the Mott-Schottky effect, the self-driven charge t...
Clean hydrogen extracted from water splitting is a sustainable energy source, but it remains challen...
Developing highly efficient, durable, and non-noble electrocatalysts for the sluggish anodic oxygen ...
Water splitting is a sustainable approach for production of hydrogen to fuel some clean energy techn...
Urea-assisted water electrolysis possesses the prospective prospect for high-efficiency hydrogen pro...
Utilizing earth-abundant metals to design economical and efficient electrocatalysts for cathodic hyd...
To achieve sustainable production of H2 fuel through water splitting, low-cost electrocatalysts for ...
To achieve sustainable production of H2 fuel through water splitting, low-cost electrocatalysts for ...
Designing affordable and efficient bifunctional electrocatalysts for the hydrogen evolution reaction...
Designing affordable and efficient bifunctional electrocatalysts for the hydrogen evolution reaction...
To achieve sustainable production of H2 fuel through water splitting, low-cost electrocatalysts for ...
Developing efficient and robust non-precious-metal-based catalysts to accelerate electrocatalytic re...
Urea electrolysis (UE) represents a promising path for hydrogen production as an alternative to wate...
Developing efficient and robust non-precious-metal-based catalysts to accelerate electrocatalytic re...
Two-dimensional layered MoS2 is considered to be a promising electrocatalyst alternative to Pt for w...
Developing highly efficient, durable, and non-noble electrocatalysts for the sluggish anodic oxygen ...
Clean hydrogen extracted from water splitting is a sustainable energy source, but it remains challen...
Developing highly efficient, durable, and non-noble electrocatalysts for the sluggish anodic oxygen ...
Water splitting is a sustainable approach for production of hydrogen to fuel some clean energy techn...
Urea-assisted water electrolysis possesses the prospective prospect for high-efficiency hydrogen pro...
Utilizing earth-abundant metals to design economical and efficient electrocatalysts for cathodic hyd...
To achieve sustainable production of H2 fuel through water splitting, low-cost electrocatalysts for ...
To achieve sustainable production of H2 fuel through water splitting, low-cost electrocatalysts for ...
Designing affordable and efficient bifunctional electrocatalysts for the hydrogen evolution reaction...
Designing affordable and efficient bifunctional electrocatalysts for the hydrogen evolution reaction...
To achieve sustainable production of H2 fuel through water splitting, low-cost electrocatalysts for ...
Developing efficient and robust non-precious-metal-based catalysts to accelerate electrocatalytic re...
Urea electrolysis (UE) represents a promising path for hydrogen production as an alternative to wate...
Developing efficient and robust non-precious-metal-based catalysts to accelerate electrocatalytic re...
Two-dimensional layered MoS2 is considered to be a promising electrocatalyst alternative to Pt for w...
Developing highly efficient, durable, and non-noble electrocatalysts for the sluggish anodic oxygen ...
Clean hydrogen extracted from water splitting is a sustainable energy source, but it remains challen...
Developing highly efficient, durable, and non-noble electrocatalysts for the sluggish anodic oxygen ...
Water splitting is a sustainable approach for production of hydrogen to fuel some clean energy techn...