Hydrogen gas obtained by the electrolysis of water has long been proposed as a clean and sustainable alternative to fossil fuels. Noble metals such as Pt are capable of splitting water at low overpotentials, but the implementation of inexpensive solar-driven water-splitting systems and electrolyzers could benefit from the development of robust, efficient, and abundant alternatives to noble metal catalysts. Transition metal phosphides (M_xP_y) have recently been identified as a promising family of Earth abundant electrocatalysts for the hydrogen-evolution reaction (HER) and are capable of operating with low overpotentials at operationally relevant current densities while exhibiting stability under strongly acidic conditions. In this review, ...
Transition metal phosphides recently have been identified as promising Earth-abundant electrocatalys...
Conversion of renewable energy resources (such as solar and wind) through water splitting to hydroge...
Electrochemical production of hydrogen from water has been directed to the search for non-noble meta...
Hydrogen gas obtained by the electrolysis of water has long been proposed as a clean and sustainable...
Abstract Hydrogen evolution from water splitting over semiconductors has been considered one of the ...
Hydrogen evolution by means of electrocatalytic water-splitting is pivotal for efficient and economi...
Platinum is a highly active and acid stable electrocatalyst for the hydrogen evolution reaction (HER...
Hydrogen evolution by means of electrocatalytic water-splitting is pivotal for efficient and economi...
Platinum is a highly active and acid stable electrocatalyst for the hydrogen evolution reaction (HER...
Hydrogen energy is a green and efficient secondary energy source. With the help of cheap non-preciou...
Electrochemical water splitting involving hydrogen evolution reaction (HER) and oxygen evolution rea...
The hydrogen evolution reaction (HER) is a developing and promising technology to deliver clean ener...
Proton Exchange Membrane (PEM) water electrolysis (WE) produces H2 with a high degree of purity, req...
Developing excellent electrocatalysts to replace noble metal catalysts and improve hydrogen producti...
Developing excellent electrocatalysts to replace noble metal catalysts and improve hydrogen producti...
Transition metal phosphides recently have been identified as promising Earth-abundant electrocatalys...
Conversion of renewable energy resources (such as solar and wind) through water splitting to hydroge...
Electrochemical production of hydrogen from water has been directed to the search for non-noble meta...
Hydrogen gas obtained by the electrolysis of water has long been proposed as a clean and sustainable...
Abstract Hydrogen evolution from water splitting over semiconductors has been considered one of the ...
Hydrogen evolution by means of electrocatalytic water-splitting is pivotal for efficient and economi...
Platinum is a highly active and acid stable electrocatalyst for the hydrogen evolution reaction (HER...
Hydrogen evolution by means of electrocatalytic water-splitting is pivotal for efficient and economi...
Platinum is a highly active and acid stable electrocatalyst for the hydrogen evolution reaction (HER...
Hydrogen energy is a green and efficient secondary energy source. With the help of cheap non-preciou...
Electrochemical water splitting involving hydrogen evolution reaction (HER) and oxygen evolution rea...
The hydrogen evolution reaction (HER) is a developing and promising technology to deliver clean ener...
Proton Exchange Membrane (PEM) water electrolysis (WE) produces H2 with a high degree of purity, req...
Developing excellent electrocatalysts to replace noble metal catalysts and improve hydrogen producti...
Developing excellent electrocatalysts to replace noble metal catalysts and improve hydrogen producti...
Transition metal phosphides recently have been identified as promising Earth-abundant electrocatalys...
Conversion of renewable energy resources (such as solar and wind) through water splitting to hydroge...
Electrochemical production of hydrogen from water has been directed to the search for non-noble meta...