The development of catalysts with earth-abundant elements for efficient oxygen evolution reactions is of paramount significance for clean and sustainable energy storage and conversion devices. Our group demonstrated recently that the electrochemical tuning of catalysts via lithium insertion and extraction has emerged as a powerful approach to improve catalytic activity. Here we report a novel in situ electrochemical oxidation tuning approach to develop a series of binary, ternary, and quaternary transition metal (e.g., Co, Ni, Fe) oxides from their corresponding sulfides as highly active catalysts for much enhanced water oxidation. The electrochemically tuned cobalt–nickel–iron oxides grown directly on the three-dimensional carbon fiber ele...
The development of high-performance oxygen evolution reaction (OER) catalysts is crucial to achieve ...
Single-component transition-metal oxide (TMO: FeOx, NiOx, or CoOx) nanosheets grown on nickel foam (...
Current energy crisis has dramatically shifted the focus of technological advancements towards clean...
Transition metal dichalcogenides have been widely studied as active electrocatalysts for hydrogen ev...
Large surface area and unique surface chemical environment are two critical factors for a catalyst, ...
The electrolysis of water is one of the most promising strategies to produce renewable fuels and it ...
The oxygen evolution reaction (OER) is a key process for renewable energy storage. However, developi...
Heterostructure engineering carries prime importance to enhance the catalytic activity of electrocat...
Clarifying and controlling the surface catalytic active sites is at the heart of developing low-cost...
Binder-free nickel sulfide material grown on NF (NiS/NF) by a basic thermal sulfur growth mechanic w...
Electrocatalysis for the oxygen evolution reaction (OER) plays an irreplaceable role in numerous gre...
The traditional synthesis for bimetallic-based electrocatalysts is challengeable for fine compositio...
NiFe- and CoFe-based (oxy)hydroxides stand out as promising and highly active earth-abundant electro...
The lack of efficient cost-effective electrocatalysts for reversible oxidation of water is by far th...
Herein, ordered mesoporous nickel cobalt oxides prepared by the nanocasting route are reported as hi...
The development of high-performance oxygen evolution reaction (OER) catalysts is crucial to achieve ...
Single-component transition-metal oxide (TMO: FeOx, NiOx, or CoOx) nanosheets grown on nickel foam (...
Current energy crisis has dramatically shifted the focus of technological advancements towards clean...
Transition metal dichalcogenides have been widely studied as active electrocatalysts for hydrogen ev...
Large surface area and unique surface chemical environment are two critical factors for a catalyst, ...
The electrolysis of water is one of the most promising strategies to produce renewable fuels and it ...
The oxygen evolution reaction (OER) is a key process for renewable energy storage. However, developi...
Heterostructure engineering carries prime importance to enhance the catalytic activity of electrocat...
Clarifying and controlling the surface catalytic active sites is at the heart of developing low-cost...
Binder-free nickel sulfide material grown on NF (NiS/NF) by a basic thermal sulfur growth mechanic w...
Electrocatalysis for the oxygen evolution reaction (OER) plays an irreplaceable role in numerous gre...
The traditional synthesis for bimetallic-based electrocatalysts is challengeable for fine compositio...
NiFe- and CoFe-based (oxy)hydroxides stand out as promising and highly active earth-abundant electro...
The lack of efficient cost-effective electrocatalysts for reversible oxidation of water is by far th...
Herein, ordered mesoporous nickel cobalt oxides prepared by the nanocasting route are reported as hi...
The development of high-performance oxygen evolution reaction (OER) catalysts is crucial to achieve ...
Single-component transition-metal oxide (TMO: FeOx, NiOx, or CoOx) nanosheets grown on nickel foam (...
Current energy crisis has dramatically shifted the focus of technological advancements towards clean...