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二维范德华异质结构CdO/PtSe:用于全分解水的有前景的可见光光催化剂。

Two-dimensional van der Waals heterostructure CdO/PtSe: promising visible light photocatalyst for overall water splitting.

作者信息

Zhang Wei, Ji Weixiao

机构信息

Physicochemical Group of College of Criminal Science and Technology & Forensic Center of Public Security of Bureau of National Forestry Bureau, Nanjing Forest Police College, Nanjing 210023, China.

出版信息

Phys Chem Chem Phys. 2020 Nov 14;22(42):24662-24668. doi: 10.1039/d0cp03564e. Epub 2020 Oct 25.

Abstract

Due to the gradual depletion of fossil fuels and the serious environmental pollution, hydrogen generation by photocatalytic water splitting has been considered as an alternative strategy for clean energy. Herein, using hybrid density functional calculations, we systematically study the structural, electronic and optical properties of van der Waals heterostructure CdO/PtSe with different stacking patterns. The heterostructure is found to be dynamically stable, and has type-II band alignment with a large built-in electric field, which is favorable for the efficient spatial separation of photogenerated charge carriers. By revealing the intrinsic interface dipoles dependent photocatalytic mechanisms, we find the band edges of all patterns straddle the water redox levels despite the AB-1 pattern having a bandgap less than 1.23 eV. Moreover, the heterostructure shows globally improved optical absorptions with a large absorption coefficient (10 cm) compared to the single layers, demonstrating the enhanced photocatalytic activity. Comparing with widely discussed bilayer systems like graphene/CN and MoS/CN, the CdO/PtSe simultaneously has several advantages or peculiarities such as the more favorable absorption of visible light, therefore CdO/PtSe is a promising candidate and a unique system for photocatalytic water splitting.

摘要

由于化石燃料的逐渐枯竭和严重的环境污染,光催化水分解制氢已被视为一种清洁能源的替代策略。在此,我们使用混合密度泛函计算方法,系统地研究了具有不同堆叠模式的范德华异质结构CdO/PtSe的结构、电子和光学性质。发现该异质结构是动态稳定的,具有II型能带排列和大的内建电场,有利于光生载流子的有效空间分离。通过揭示依赖于本征界面偶极子的光催化机制,我们发现尽管AB - 1模式的带隙小于1.23 eV,但所有模式的能带边缘都跨越了水的氧化还原水平。此外,与单层相比,该异质结构显示出整体改善的光吸收,具有大的吸收系数(10 cm),证明了其增强的光催化活性。与广泛讨论的双层系统如石墨烯/CN和MoS/CN相比,CdO/PtSe同时具有几个优点或特性,如对可见光更有利的吸收,因此CdO/PtSe是光催化水分解的一个有前途的候选者和独特系统。

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