Practical application of electrochemical water splitting demands durable, efficient, and non-noble metal catalysts for both hydrogen evolution reaction (HER) and oxygen evolution reaction (OER). Herein, we report a new hydrogen evolution nanowire electrocatalyst, consisting of S-doped CoWP nanoparticles embedded in S- and N-doped carbon matrix (S-CoWP@(S,N)-C), which is in situ transformed from Hofmann-type (Co, W)-based metal–organic framework (MOF) nanowires. Because of S and N doping to the carbon matrix and the S doping to CoWP nanoparticles, the obtained S-CoWP@(S,N)-C catalyst reaches a current density of −10 mA cm<sup>–2</sup> at −35 and −67 mV (vs RHE) in acidic and alkaline electrolytes, respectively. Powered by a lead halide perov...
Electrocatalytic water splitting into H-2 and O-2 is a key technology for carbon-neutral energy. Her...
We present the synthesis and characterization of an efficient and low cost solar-driven electrolyzer...
Water splitting (WS) has attracted increasing attention for producing highly pure hydrogen and oxyge...
Developing low-cost and high-performance bifunctional electrocatalysts is an essential prerequisite ...
The preparation of highly active, sustainable, nonprecious metal materials as hydrogen evolution and...
The rapid development of hydrogen energy is strongly dependent on the economic and efficient product...
The design of active, robust, and nonprecious electrocatalysts with both H<sub>2</sub> and O<sub>2</...
The construction of high-efficiency and low-cost non-noble metal bifunctional electrocatalysts for w...
The design of active, robust, and nonprecious electrocatalysts with both H2 and O2 evolution reactio...
Abstract The construction of high‐efficiency and low‐cost non‐noble metal bifunctional electrocataly...
Electrochemical water splitting has attracted significant attention as a key pathway for the develop...
Transition metal phosphides and oxides are heralded as inexpensive alternatives to precious metal ca...
Electrochemical water splitting is considered a sustainable way to produce H 2 . However, it is stil...
The development of a highly efficient and stable bifunctional electrocatalyst for water splitting is...
Highly efficient electrocatalysts for hydrogen evolution reactions (HER) are crucial for electrochem...
Electrocatalytic water splitting into H-2 and O-2 is a key technology for carbon-neutral energy. Her...
We present the synthesis and characterization of an efficient and low cost solar-driven electrolyzer...
Water splitting (WS) has attracted increasing attention for producing highly pure hydrogen and oxyge...
Developing low-cost and high-performance bifunctional electrocatalysts is an essential prerequisite ...
The preparation of highly active, sustainable, nonprecious metal materials as hydrogen evolution and...
The rapid development of hydrogen energy is strongly dependent on the economic and efficient product...
The design of active, robust, and nonprecious electrocatalysts with both H<sub>2</sub> and O<sub>2</...
The construction of high-efficiency and low-cost non-noble metal bifunctional electrocatalysts for w...
The design of active, robust, and nonprecious electrocatalysts with both H2 and O2 evolution reactio...
Abstract The construction of high‐efficiency and low‐cost non‐noble metal bifunctional electrocataly...
Electrochemical water splitting has attracted significant attention as a key pathway for the develop...
Transition metal phosphides and oxides are heralded as inexpensive alternatives to precious metal ca...
Electrochemical water splitting is considered a sustainable way to produce H 2 . However, it is stil...
The development of a highly efficient and stable bifunctional electrocatalyst for water splitting is...
Highly efficient electrocatalysts for hydrogen evolution reactions (HER) are crucial for electrochem...
Electrocatalytic water splitting into H-2 and O-2 is a key technology for carbon-neutral energy. Her...
We present the synthesis and characterization of an efficient and low cost solar-driven electrolyzer...
Water splitting (WS) has attracted increasing attention for producing highly pure hydrogen and oxyge...