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用于提高光利用率的BSe-MoS/WS异质结构的可调电子特性

Tunable electronic properties of BSe-MoS/WS heterostructures for promoted light utilization.

作者信息

Li Honglin, Ye Lijuan, Xiong Yuanqiang, Zhang Hong, Zhou Shuren, Li Wanjun

机构信息

College of Physics and Electronic Engineering, Chongqing Normal University, Chongqing 401331, P. R. China.

出版信息

Phys Chem Chem Phys. 2021 Apr 28;23(16):10081-10096. doi: 10.1039/d1cp00709b.

Abstract

With applications in high performance electronics, photovoltaics, and catalysis, two-dimensional (2D) transition metal dichalcogenides (TMDCs) attract extensive attention due to their extraordinary physical properties. People have focused on TMDC-based materials for years, while the low mobility greatly hinders their further application. TMDC-based heterostructures with tunable band alignment have been experimentally confirmed to be feasible for photoelectronic devices or photocatalysts. Based on the density functional theory (DFT), there are four discoveries in this work: (1) we propose two new heterostructures based on BSe and MoS2/WS2 that have quite low mismatches and intrinsic type-II alignments. (2) Even though the VBM of BSe-MoS2 are completely contributed by BSe, the heterostructure is still endowed with a lower effective mass and a better transport characteristic in comparison with pristine structures. (3) A promoted absorption ability and a better transport characteristic oppose each other and the two characteristics cannot be obtained at the same time. (4) Tension strained structures can induce promoted light absorption in the solar spectrum and the predicted efficiency of the BSe-MoS2 bilayer can be as high as ∼19.3%, when the external electric field is applied. This theoretical survey proves that BSe-MoS2/WS2 with high flexibility and tunability are potential candidates for novel electronic devices and photocatalysts.

摘要

二维(2D)过渡金属二硫属化物(TMDCs)因其非凡的物理性质,在高性能电子学、光伏和催化领域的应用中吸引了广泛关注。多年来人们一直关注基于TMDCs的材料,但其低迁移率极大地阻碍了它们的进一步应用。具有可调带隙排列的基于TMDCs的异质结构已通过实验证实可用于光电器件或光催化剂。基于密度泛函理论(DFT),这项工作有四项发现:(1)我们提出了两种基于BSe与MoS2/WS2的新型异质结构,它们具有相当低的失配和本征II型排列。(2)尽管BSe-MoS2的价带顶完全由BSe贡献,但与原始结构相比,该异质结构仍具有更低的有效质量和更好的传输特性。(3)增强的吸收能力和更好的传输特性相互矛盾,无法同时实现。(4)拉伸应变结构可在太阳光谱中诱导增强的光吸收,当施加外部电场时,BSe-MoS2双层的预测效率可高达约19.3%。这项理论研究证明,具有高灵活性和可调性的BSe-MoS2/WS2是新型电子器件和光催化剂的潜在候选材料。

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