Abstract:Oxygen evolution reaction (OER) plays a vital role in fuel cells, water splitting and metal-air batteries. Efficient electrocatalysts could overcome the higher overpotential of OER, improve electron transfer efficiency, and...
“…Various electronic 7 and structural factors [8][9][10][11] have been proposed as descriptors of OER activity. These factors include the number of d electrons in the e g orbital of transition metals in perovskite-type multimetal oxides, 12 and the charge-transfer energy, 13 which represents the energy level gap between the occupied p orbitals of oxygen and the unoccupied d orbital of the transition metal.…”
There is a need for comprehensive descriptors to develop prominent electrocatalysts used in the oxygen evolution reaction (OER) in water splitting. Through machine learning analysis of data obtained from multimetal...
“…Various electronic 7 and structural factors [8][9][10][11] have been proposed as descriptors of OER activity. These factors include the number of d electrons in the e g orbital of transition metals in perovskite-type multimetal oxides, 12 and the charge-transfer energy, 13 which represents the energy level gap between the occupied p orbitals of oxygen and the unoccupied d orbital of the transition metal.…”
There is a need for comprehensive descriptors to develop prominent electrocatalysts used in the oxygen evolution reaction (OER) in water splitting. Through machine learning analysis of data obtained from multimetal...
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