Borophene−supported single transition metal atoms as potential oxygen evolution/reduction electrocatalysts: a density functional theory study

JOURNAL OF MOLECULAR MODELING(2021)

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摘要
Due to the maximal atom utilization, high activity, and selectivity, the two-dimensional (2D) matrix supported single-atom catalysts (SACs) have attracted substantial research interests. In this work, we carried out the theoretical study on the stability, activity for oxygen evolution reaction (OER) and oxygen reduction reaction (ORR), and its dependence on the electronic structure of transition metal ( TM ) anchored on two types of borophene (called β 12 and χ 3 ) by density functional theory (DFT) calculations. The results show that the early− and VIII− TM anchored β 12 and χ 3 borophenes are structurally and thermodynamically stable. The overpotentials of OER ( η OER ) over the Ni supported on β 12 and χ 3 borophene SACs, designated as β 12 −Ni and χ 3 −Ni, are 0.38 and 0.35 V, respectively. The η ORR of β 12 −Ni and χ 3 −Ni are estimated to be as low as 0.34 and 0.39 V, respectively. The OER/ORR activity of the SACs can be well correlated with their electronic structures. The high η OER values of early TM supported on borophene SACs correspond to high d-band center of TM . Both β 12 −Ni and χ 3 −Ni have a moderate d-band center. Since the overpotentials for OER and ORR on β 12 −Ni and χ 3 −Ni are comparable to those of Pt group metals and their oxides, β 12 −Ni and χ 3 −Ni can be considered as the promising bifunctional catalysts for OER and ORR.
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关键词
Borophene,Oxygen evolution reaction (OER),Oxygen reduction reaction (ORR),Single-atom catalysts (SACs),Density functional theory (DFT)
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