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基于二维蓝磷和XC(X = Ge,Si)的范德华异质结构用于光催化水分解:第一性原理研究

Using van der Waals heterostructures based on two-dimensional blue phosphorus and XC (X = Ge, Si) for water-splitting photocatalysis: a first-principles study.

作者信息

Ren Kai, Ren Chongdan, Luo Yi, Xu Yujing, Yu Jin, Tang Wencheng, Sun Minglei

机构信息

School of Mechanical Engineering, Southeast University, Nanjing, Jiangsu 211189, China.

出版信息

Phys Chem Chem Phys. 2019 May 15;21(19):9949-9956. doi: 10.1039/c8cp07680d.

Abstract

Solar-powered production of hydrogen from water has been pursued as one of the solutions to the global energy crisis. Meanwhile, two-dimensional (2D) materials have attracted significant attention as photocatalysts. In this paper, the geometric structures, electronic band structures, band alignment, and optical properties of two novel van der Waals (vdW) heterostructures based on 2D blue phosphorus (BlueP) and 2D XC (X = Ge, Si) were systematically explored using first-principles calculations. We found that both BlueP/GeC and BlueP/SiC vdW heterostructures possess type-II band structures, which can continuously separate the photogenerated electron-hole pairs. The calculated band-edge positions suggest that the BlueP/SiC and BlueP/GeC vdW heterostructures act as potential photocatalysts for water-splitting at pH 0 and pH 7, respectively. Furthermore, XC acts as an electron-donating layer in the BlueP/XC vdW heterostructure, and the potential drop across the interface can generate a large built-in electric field across the interface; this electric field plays a crucial role in preventing the recombination of photogenerated charges. Finally, the optical properties of the BlueP/XC vdW heterostructures demonstrate that they have excellent ability to capture visible light, making them promising high-performance photocatalysts for water splitting.

摘要

利用太阳能从水中制取氢气已被视为解决全球能源危机的方案之一。与此同时,二维(2D)材料作为光催化剂引起了广泛关注。本文采用第一性原理计算系统地研究了基于二维蓝磷(BlueP)和二维XC(X = Ge、Si)的两种新型范德华(vdW)异质结构的几何结构、电子能带结构、能带排列和光学性质。我们发现,BlueP/GeC和BlueP/SiC范德华异质结构均具有II型能带结构,能够持续分离光生电子-空穴对。计算得到的带边位置表明,BlueP/SiC和BlueP/GeC范德华异质结构分别在pH值为0和pH值为7时作为水分解的潜在光催化剂。此外,XC在BlueP/XC范德华异质结构中充当电子供体层,界面上的电势降会在整个界面产生一个大的内建电场;该电场在防止光生电荷复合方面起着关键作用。最后,BlueP/XC范德华异质结构的光学性质表明它们具有优异的可见光捕获能力,使其成为水分解的有前途的高性能光催化剂。

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