Noble-metal-free hydrogen/oxygen evolution reaction (HER/OER) electrocatalysts, especially bifunctional electrocatalysts, are essential for overall water splitting, but their performance is impeded by many factors like poor electrical conductivity. Herein, we fabricated cobalt phosphide (CoP) nanoparticles embedded in P and N co-doped carbon (PNC) matrix (CoP@PNC) to fully realize the high activity of CoP by maximizing its conductivity. Simply a carbonization coupled phosphidation approach was utilized where Co ions and organic ligands of Co-MOF were transferred into CoP and P and N co-doped carbon. The synthesized material shows an ideal electrical conductivity, excellent HER (overpotential of -84 mV and -120 mV @10 mA cm -2 in acidic and ...
Rational design and development of highly active, low-cost, and stable nonprecious metal electrocata...
The design of active, robust, and nonprecious electrocatalysts with both H<sub>2</sub> and O<sub>2</...
It is very important to explore novel synthesis strategies for constructing highly active and inexpe...
Sulfur-doped CoP (S:CoP) nanoparticles are synthesized as a noble metal-free electrocatalyst via a n...
Highly efficient non-noble materials for water splitting are essential for renewable energy applicat...
Hydrogen production from renewable electricity relies upon the development of an efficient alkaline ...
International audienceThe development of cost-effective, high-performance, and robust bifunctional e...
International audienceThe development of cost-effective, high-performance, and robust bifunctional e...
International audienceThe development of cost-effective, high-performance, and robust bifunctional e...
International audienceThe development of cost-effective, high-performance, and robust bifunctional e...
The design of active, robust, and nonprecious electrocatalysts with both H2 and O2 evolution reactio...
The design of active, robust, and nonprecious electrocatalysts with both H2 and O2 evolution reactio...
The development of a highly efficient and stable bifunctional electrocatalyst for water splitting is...
The development of a highly efficient and stable bifunctional electrocatalyst for water splitting is...
© 2018 The Authors. Published by WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Hydrogen production fr...
Rational design and development of highly active, low-cost, and stable nonprecious metal electrocata...
The design of active, robust, and nonprecious electrocatalysts with both H<sub>2</sub> and O<sub>2</...
It is very important to explore novel synthesis strategies for constructing highly active and inexpe...
Sulfur-doped CoP (S:CoP) nanoparticles are synthesized as a noble metal-free electrocatalyst via a n...
Highly efficient non-noble materials for water splitting are essential for renewable energy applicat...
Hydrogen production from renewable electricity relies upon the development of an efficient alkaline ...
International audienceThe development of cost-effective, high-performance, and robust bifunctional e...
International audienceThe development of cost-effective, high-performance, and robust bifunctional e...
International audienceThe development of cost-effective, high-performance, and robust bifunctional e...
International audienceThe development of cost-effective, high-performance, and robust bifunctional e...
The design of active, robust, and nonprecious electrocatalysts with both H2 and O2 evolution reactio...
The design of active, robust, and nonprecious electrocatalysts with both H2 and O2 evolution reactio...
The development of a highly efficient and stable bifunctional electrocatalyst for water splitting is...
The development of a highly efficient and stable bifunctional electrocatalyst for water splitting is...
© 2018 The Authors. Published by WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Hydrogen production fr...
Rational design and development of highly active, low-cost, and stable nonprecious metal electrocata...
The design of active, robust, and nonprecious electrocatalysts with both H<sub>2</sub> and O<sub>2</...
It is very important to explore novel synthesis strategies for constructing highly active and inexpe...