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Effects of intrinsic defects on the photocatalytic water-splitting activities of PtSe_2

机译:固有缺陷对PtSe_2光催化水分解活性的影响

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PtSe2 monolayer is previously predicted to be a two-dimensional water-splitting photocatalyst. However, the weak van der Waals (vdW) interaction between H2O and the basal surface of PtSe2 significantly undermines its photocatalytic water-splitting activities. In this work, we explore the possibility of various intrinsic defects of PtSe2 in remedying this deficiency on the basis of first-principles calculations. It is interesting to find that the introduction of Pt@Se, Se@Pt, and Se interstitial defect not only fully retain the water redox abilities of pure PtSe2 and realize spatial separation of photogenerated electrons and holes, but also can extend optical absorption range and absorption coefficients. Moreover, introduction of the three kinds of defects increase the initial weak vdW interactions between H2O and the PtSe2 surface to different extent. In particular, Pt@Se anti-site defect transform the initial weak vdW to strong chemical interaction between H2O and PtSe2 surface, and function as active reaction site. These insights demonstrate that introduction of intrinsic defects, especially the Pt@Se anti-site defect, are effective means for improving the photocatalytic water-splitting activities of PtSe(2 )monolayer. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:先前预测PtSe2单层是二维水分解光催化剂。但是,H2O与PtSe2基础表面之间的弱范德华(vdW)相互作用显着破坏了其光催化水分解活性。在这项工作中,我们根据第一性原理计算探索了PtSe2各种内在缺陷的可能性,以弥补这一缺陷。有趣的是,引入Pt @ Se,Se @ Pt和Se间隙缺陷不仅完全保留了纯PtSe2的水氧化还原能力,实现了光生电子和空穴的空间分离,而且还可以扩展光吸收范围和吸收系数。此外,三种缺陷的引入在不同程度上增加了H2O和PtSe2表面之间的初始弱vdW相互作用。特别是,Pt @ Se抗位缺陷将最初的弱vdW转变为H2O和PtSe2表面之间的强化学相互作用,并起着活性反应位的作用。这些见解表明,引入固有缺陷,尤其是Pt @ Se反位缺陷,是提高PtSe(2)单层光催化水分解活性的有效手段。 (C)2020 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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