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Strain engineering and photocatalytic application of single-layer ReS2

机译:单层ReS2的应变工程及光催化应用

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We present a theoretical study on the electronic, dynamical, and photocatalytic properties of single-layer ReS2 under uniaxial and shear strains. The single-layer ReS2 shows strong anisotropic responses to straining. It remains dynamically stable for a wide range of x-axial strain, but becomes unstable for 2% y-axial compressive strain. The single-layer ReS2 is calculated to be an indirect bandgap semiconductor, and there is an indirect-direct bandgap transition under 1-5% x-axial tensile straining. The single-layer ReS2 is predicted incapable of catalyzing the water oxidation reaction. However, 1-5% y-axial tensile strain can enable the single-layer ReS2 for overall photocatalytic water splitting. Besides, the single-layer ReS2 can also catalyze the overall water splitting and be most efficient under acidic water solutions with pH = 3.8. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:我们目前在单轴和剪切应变下对单层ReS2的电子,动力学和光催化性能进行理论研究。单层ReS2对应变表现出强烈的各向异性响应。它在广泛的x轴应变范围内保持动态稳定,但在2%y轴压缩应变下变得不稳定。计算出单层ReS2是间接带隙半导体,并且在1-5%的x轴拉伸应变下存在间接-直接带隙跃迁。预计单层ReS2无法催化水氧化反应。但是,1-5%的y轴向拉伸应变可以使单层ReS2用于整体光催化水分解。此外,单层ReS2还可以催化总的水分解,并且在pH = 3.8的酸性水溶液中效率最高。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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