Metal-nitrides-based electrocatalysts for efficient oxygen-evolution have been extensively studied as one of the most promising candidates to fulfil the demand for future energy-conversion and storage. Herein, a series of NixCo1−xO- and NixCo1−xN-based nanostructures on nickel foams were reported to show excellent activities for oxygen-evolution reaction. The catalysts were prepared and modulated rationally via a facile-hydrothermal method, followed by high-temperature calcination under air or nitrogen atmosphere. The optimal bimetallic-nitride catalyst Ni0.3Co0.7N shows a small overpotential of 268 mV at 20 mA cm−2, and a Tafel slope of 66 mV dec−1 with good stability. The enhanced OER-performance is ascribed to the synergetic effect of th...
The high efficiency, power density and compatibility with the environment of proton exchange membran...
Nanocasting or hard-templating is a versatile method to produce ordered mesoporous mixed transition ...
Establishing a correlation between the crystal structure and electrocatalytic activity is crucial to...
The accessible oxide surface with a defect is of fundamental importance for oxygen evolution electro...
Developing low cost, high-performance, and durable bifunctional catalysts for oxygen reduction and o...
A simple and economical synthetic route for direct one-step growth of bimetallic Ni2Mo3N nanoparticl...
Efficient electrocatalysts for oxygen evolution are vitally important for regenerative fuel cells an...
Transition metal nitrides have received a great deal of attention as highly efficient OER catalysts ...
Bi-functional electrocatalysts capable of both the oxygen reduction reaction (ORR) and the oxygen ev...
The overriding obstacle to mass production of hydrogen from water as the premium fuel for powering o...
The overriding obstacle to mass production of hydrogen from water as the premium fuel for powering o...
Efficient oxygen evolution reaction (OER) catalysts are required to facilitate the large-scale explo...
Exploring economically efficient electrocatalysts with good electrocatalytic activity is essential f...
This report describes the development and the optimization of new synthesis routes yielding electroc...
Exploring efficient and inexpensive oxygen evolution reaction (OER) electrocatalysts is of great imp...
The high efficiency, power density and compatibility with the environment of proton exchange membran...
Nanocasting or hard-templating is a versatile method to produce ordered mesoporous mixed transition ...
Establishing a correlation between the crystal structure and electrocatalytic activity is crucial to...
The accessible oxide surface with a defect is of fundamental importance for oxygen evolution electro...
Developing low cost, high-performance, and durable bifunctional catalysts for oxygen reduction and o...
A simple and economical synthetic route for direct one-step growth of bimetallic Ni2Mo3N nanoparticl...
Efficient electrocatalysts for oxygen evolution are vitally important for regenerative fuel cells an...
Transition metal nitrides have received a great deal of attention as highly efficient OER catalysts ...
Bi-functional electrocatalysts capable of both the oxygen reduction reaction (ORR) and the oxygen ev...
The overriding obstacle to mass production of hydrogen from water as the premium fuel for powering o...
The overriding obstacle to mass production of hydrogen from water as the premium fuel for powering o...
Efficient oxygen evolution reaction (OER) catalysts are required to facilitate the large-scale explo...
Exploring economically efficient electrocatalysts with good electrocatalytic activity is essential f...
This report describes the development and the optimization of new synthesis routes yielding electroc...
Exploring efficient and inexpensive oxygen evolution reaction (OER) electrocatalysts is of great imp...
The high efficiency, power density and compatibility with the environment of proton exchange membran...
Nanocasting or hard-templating is a versatile method to produce ordered mesoporous mixed transition ...
Establishing a correlation between the crystal structure and electrocatalytic activity is crucial to...