Affiliation:
1. Xinjiang Key Laboratory of Solid State Physics and Devices & School of Physical Science and Technology Xinjiang University 777 Huarui Street Urumqi 830017 China
2. School of Physics Hunan Key Laboratory for Super‐Microstructure and Ultrafast Process, and Hunan Key Laboratory of Nanophotonics and Devices Central South University Changsha 410083 China
Abstract
AbstractDeveloping efficient oxygen evolution reaction (OER) and oxygen reduction reaction (ORR) bifunctional electrocatalysts is attractive for rechargeable metal–air batteries. Meanwhile, single metal atoms embedded in 2D layered transition metal chalcogenides (TMDs) have become a very promising catalyst. Recently, many attentions have been paid to the 2D ReS2 electrocatalyst due to its unique distorted octahedral 1T’ crystal structure and thickness‐independent electronic properties. Here, the catalytic activity of different transition metal (TM) atoms embedded in ReS2 using the density functional theory is investigated. The results indicate that TM@ReS2 exhibits outstanding thermal stability, good electrical conductivity, and electron transfer for electrochemical reactions. And the Ir@ReS2 and Pd@ReS2 can be used as OER/ORR bifunctional electrocatalysts with a lower overpotential for OER (ηOER) of 0.44 V and overpotentials for ORR (ηORR) of 0.26 V and 0.27 V, respectively. The excellent catalytic activity is attributed to the optimal adsorption strength for oxygen intermediates coming from the effective modulation of the electronic structure of ReS2 after Ir/Pd doping. The results can help to deeply understand the catalytic activity of TM@ReS2 and develop novel and highly efficient OER/ORR electrocatalysts.
Funder
National Natural Science Foundation of China
Science and Technology Department of Xinjiang Uygur Autonomous Region
Cited by
3 articles.
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