Abstract Hydrogen is the most preferred choice as an energy source to replace the nonrenewable energy resources such as fossil fuels due to its beneficial features of abundance, ecofriendly, and outstanding gravimetric energy density. Splitting water through a proton exchange membrane (PEM) electrolyzer is a well‐known method of hydrogen production. But the major impediment is the sluggish kinetics of oxygen evolution reaction (OER). Currently, scientists are struggling to build out an acid‐stable electrocatalyst for OER with low overpotential and excellent stability. In this review, the reaction mechanism and characterization parameters of OER are introduced, and then the improvement method of metal nanocatalysts (noble metal catalysts and...
[[abstract]]Electrocatalytic water splitting is a key technique to produce hydrogen fuels, which can...
International audienceThe need to increase the energy production from renewable sources and their in...
Hydrogen is widely considered an ideal green energy carrier and a leading candidate to replace nonre...
Developing efficient electrocatalysts toward acidic oxygen evolution reaction (AOER) is of vital sig...
The low efficiency of the electrocatalytic oxidation of water to O<sub>2</sub> (oxygen evolution rea...
In order to meet the ever-increasing demand for energy, a worldwide transition away from fossil fuel...
In order to adopt water electrolyzers as a main hydrogen production system, it is critical to develo...
A fundamental change has been achieved in understanding surface electrochemistry due to the profound...
The oxygen evolution reaction (OER) is the bottleneck in water electrolysis towards green hydrogen g...
International audienceProton exchange membrane water electrolysers (PEMWEs) are perceived as one of ...
Although proton exchange membrane (PEM) water electrolyzers offer a promising means for generation o...
Developing clean and renewable energy resources has become one of the world's most important challen...
Developing earth-abundant-electrocatalysts for oxygen evolution reaction is one of the promising way...
Hydrogen can be produced in a clean way from water by its electrochemical splitting. Water electroly...
The conversion of intermittent renewable energy resources in the form of chemical bond, such as hydr...
[[abstract]]Electrocatalytic water splitting is a key technique to produce hydrogen fuels, which can...
International audienceThe need to increase the energy production from renewable sources and their in...
Hydrogen is widely considered an ideal green energy carrier and a leading candidate to replace nonre...
Developing efficient electrocatalysts toward acidic oxygen evolution reaction (AOER) is of vital sig...
The low efficiency of the electrocatalytic oxidation of water to O<sub>2</sub> (oxygen evolution rea...
In order to meet the ever-increasing demand for energy, a worldwide transition away from fossil fuel...
In order to adopt water electrolyzers as a main hydrogen production system, it is critical to develo...
A fundamental change has been achieved in understanding surface electrochemistry due to the profound...
The oxygen evolution reaction (OER) is the bottleneck in water electrolysis towards green hydrogen g...
International audienceProton exchange membrane water electrolysers (PEMWEs) are perceived as one of ...
Although proton exchange membrane (PEM) water electrolyzers offer a promising means for generation o...
Developing clean and renewable energy resources has become one of the world's most important challen...
Developing earth-abundant-electrocatalysts for oxygen evolution reaction is one of the promising way...
Hydrogen can be produced in a clean way from water by its electrochemical splitting. Water electroly...
The conversion of intermittent renewable energy resources in the form of chemical bond, such as hydr...
[[abstract]]Electrocatalytic water splitting is a key technique to produce hydrogen fuels, which can...
International audienceThe need to increase the energy production from renewable sources and their in...
Hydrogen is widely considered an ideal green energy carrier and a leading candidate to replace nonre...