Heterogeneous electrocatalysis usually involves the charge transfer between the surface of electrocatalysts and corresponding reactants. Thus, modulating the surface electron density of electrocatalysts is an effective strategy to boost the electrocatalytic activity of targeted reactions. Herein, the NiSe2/FeSe2 p-p heterojunction is constructed via a simple selenization method for both oxygen evolution reaction (OER) and urea oxidation reaction (UOR). The designed NiSe2/FeSe2 electrocatalyst exhibits a superior activity towards OER, which only requires a low overpotential of 256 mV to reach a current density of 10 mA cm(-2), and surpasses other selenides and even the state-of-the-art RuO2. Impressively, when employed as the UOR electrode, ...
Developing efficient and robust non-precious-metal-based catalysts to accelerate electrocatalytic re...
The catalytic activity and reactivity of catalysts can be varied by adopting methods such as composi...
peer-reviewedThe electronic structure of active sites is critically important for electrochemical r...
Heterogeneous electrocatalysis usually involves the charge transfer between the surface of electroca...
© 2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Constructing heterostructures with abundant interf...
Cost-effective and stable electrocatalysts with ultra-high current densities for electrochemical oxy...
Developing highly efficient, durable, and non-noble electrocatalysts for the sluggish anodic oxygen ...
Developing highly efficient, durable, and non-noble electrocatalysts for the sluggish anodic oxygen ...
Abstract The electronic structure of active sites is critically important for electrochemical reacti...
Developing low-cost electrocatalysts with high efficiency for water splitting is a critical task to ...
Herein we have shown that electrodeposited NiSe2 can be used as a bifunctional electrocatalyst under...
Non-noble-metal-based nanomaterials can exhibit extraordinary electrocatalytic performance toward th...
The electronic structure of active sites is critically important for electrochemical reactions. Here...
The design and synthesis of complex multi-component heterostructures is an effective strategy to fab...
Developing efficient and robust non-precious-metal-based catalysts to accelerate electrocatalytic re...
Developing efficient and robust non-precious-metal-based catalysts to accelerate electrocatalytic re...
The catalytic activity and reactivity of catalysts can be varied by adopting methods such as composi...
peer-reviewedThe electronic structure of active sites is critically important for electrochemical r...
Heterogeneous electrocatalysis usually involves the charge transfer between the surface of electroca...
© 2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Constructing heterostructures with abundant interf...
Cost-effective and stable electrocatalysts with ultra-high current densities for electrochemical oxy...
Developing highly efficient, durable, and non-noble electrocatalysts for the sluggish anodic oxygen ...
Developing highly efficient, durable, and non-noble electrocatalysts for the sluggish anodic oxygen ...
Abstract The electronic structure of active sites is critically important for electrochemical reacti...
Developing low-cost electrocatalysts with high efficiency for water splitting is a critical task to ...
Herein we have shown that electrodeposited NiSe2 can be used as a bifunctional electrocatalyst under...
Non-noble-metal-based nanomaterials can exhibit extraordinary electrocatalytic performance toward th...
The electronic structure of active sites is critically important for electrochemical reactions. Here...
The design and synthesis of complex multi-component heterostructures is an effective strategy to fab...
Developing efficient and robust non-precious-metal-based catalysts to accelerate electrocatalytic re...
Developing efficient and robust non-precious-metal-based catalysts to accelerate electrocatalytic re...
The catalytic activity and reactivity of catalysts can be varied by adopting methods such as composi...
peer-reviewedThe electronic structure of active sites is critically important for electrochemical r...