Electrochemical production of hydrogen from water requires the development of electrocatalysts that are active, stable, and low-cost for water splitting. To address these challenges, researchers are increasingly exploring binder-free electrocatalytic integrated electrodes (IEs) as an alternative to conventional powder-based electrode preparation methods, for the former is highly desirable to improve the catalytic activity and long-term stability for large-scale applications of electrocatalysts. Herein, we demonstrate a laser-induced hydrothermal reaction (LIHR) technique to grow NiMoO _4 nanosheets on nickel foam, which is then calcined under H _2 /Ar mixed gases to prepare the IE IE-NiMo-LR. This electrode exhibits superior hydrogen evolut...
Active and stable electrocatalysts are the key to water electrolysis for hydrogen production. This p...
Layered double hydroxide (LDH) provides a unique platform to design low-cost multifunctional catalys...
We report the development of an efficient and earth-abundant catalyst for electrochemical overall wa...
Highlights Electrodes with NiMoO4 nanosheet arrays were fabricated by rapid laser scanning over nick...
The growing demand of energy coupled with the limited supply of the major energy sources such as fos...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
Designing economical and high-efficiency electrocatalysts for overall water splitting is urgently ne...
The development of highly efficient eletrocatalysts for water electrolysis application is a rising h...
Bottom-up synthesis of porous NiMo alloy reduced by NiMoO4 nanofibers was systematically investigate...
Designing nonprecious electrocatalysts with multiple active sites and prolonged durability in an int...
The design of active catalysts and low-cost fabrication of electrodes are crucial to realize renewab...
Designing cost-effective electrocatalysts for electrochemical water splitting to generate the hydrog...
In contemporary society, there are many different ways that energy is used in daily life. From appli...
Developing highly efficient low-cost electrocatalysts for both hydrogen evolution reaction (HER) and...
Electrochemical energy conversion processes such as water reduction to produce hydrogen and carbon d...
Active and stable electrocatalysts are the key to water electrolysis for hydrogen production. This p...
Layered double hydroxide (LDH) provides a unique platform to design low-cost multifunctional catalys...
We report the development of an efficient and earth-abundant catalyst for electrochemical overall wa...
Highlights Electrodes with NiMoO4 nanosheet arrays were fabricated by rapid laser scanning over nick...
The growing demand of energy coupled with the limited supply of the major energy sources such as fos...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
Designing economical and high-efficiency electrocatalysts for overall water splitting is urgently ne...
The development of highly efficient eletrocatalysts for water electrolysis application is a rising h...
Bottom-up synthesis of porous NiMo alloy reduced by NiMoO4 nanofibers was systematically investigate...
Designing nonprecious electrocatalysts with multiple active sites and prolonged durability in an int...
The design of active catalysts and low-cost fabrication of electrodes are crucial to realize renewab...
Designing cost-effective electrocatalysts for electrochemical water splitting to generate the hydrog...
In contemporary society, there are many different ways that energy is used in daily life. From appli...
Developing highly efficient low-cost electrocatalysts for both hydrogen evolution reaction (HER) and...
Electrochemical energy conversion processes such as water reduction to produce hydrogen and carbon d...
Active and stable electrocatalysts are the key to water electrolysis for hydrogen production. This p...
Layered double hydroxide (LDH) provides a unique platform to design low-cost multifunctional catalys...
We report the development of an efficient and earth-abundant catalyst for electrochemical overall wa...