Regulation on the electrical and optical properties of two-dimensional stacked graphene quantum dots/gold quantum dots/tungsten sulfide heterostructures

被引:1
|
作者
Li, Ning [1 ]
Ma, Yong [1 ]
Chang, Qing [1 ]
Xue, Chaorui [1 ]
Zhu, Ranran [2 ]
Zheng, Wenjing [1 ]
Hao, Caihong [1 ]
Hu, Shengliang [1 ]
机构
[1] North Univ China, Sch Energy & Power Engn, Taiyuan 030051, Peoples R China
[2] Taiyuan Univ Sci & Technol, Sch Vehicle & Traff Engn, Taiyuan 030024, Peoples R China
关键词
2D stacked Au QDs/WS2 and GQDs/Au QDs/ WS2 heterostructures; First-principles calculations; Visible-near infrared light absorption; Charge transfer; Photocatalytic conversion; ELECTRONIC-PROPERTIES; AU-N; NANOSHEETS; DOTS; NANOPARTICLES; PERFORMANCE; MONOLAYERS; CLUSTERS;
D O I
10.1016/j.physb.2023.414884
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
Two-dimensional (2D) transition metal dichalcogenides (TMDCs), like WS2, have been particularly promising in the application of solar energy conversion. Nevertheless, how to enhance the absorption capacity and photogenerated dcharge transfer is yet challenging. Herein, 2D stacked heterostructures were firstly constructed by 2D Au quantum dots (QDs), graphene quantum dots (GQDs) and WS2 monolayer. Compared with WS2 monolayer, the absorption abilities of the Au QDs/WS2 heterostructures in visible-near infrared light region of 450-2300 nm increase evidently. Simultaneously, charge redistribution occurs at the WS2-Au interfaces and generates the built-in electric field with the direction from Au QDs to the WS2 monolayer. This built-in electric field is conducive to boosting photo-induced charge separation and transfer. Notably, more obvious charge transfer and stronger built-in electric field can be achieved in WS2-Au6 interface after introducing the GQDs. Therefore, this work provides unique insights for designing new WS2-based heterostructures to improve the solar energy conversion.
引用
收藏
页数:7
相关论文
共 50 条
  • [1] Quantum computation with two-dimensional graphene quantum dots
    李杰森
    李志兵
    姚道新
    [J]. Chinese Physics B, 2012, 21 (01) : 442 - 448
  • [2] Quantum computation with two-dimensional graphene quantum dots
    Li Jie-Sen
    Li Zhi-Bing
    Yao Dao-Xin
    [J]. CHINESE PHYSICS B, 2012, 21 (01)
  • [3] Two-Dimensional Gold Quantum Dots with Tunable Bandgaps
    Bhandari, Shiva
    Hao, Boyi
    Waters, Kevin
    Lee, Chee Huei
    Idrobo, Juan-Carlos
    Zhang, Dongyan
    Pandey, Ravindra
    Yap, Yoke Khin
    [J]. ACS NANO, 2019, 13 (04) : 4347 - 4353
  • [4] Electronic and magnetic properties of stacked graphene quantum dots
    Tiutiunnyk, A.
    Laroze, D.
    Correa, J. D.
    Mora-Ramos, M. E.
    [J]. DIAMOND AND RELATED MATERIALS, 2023, 131
  • [5] Optical properties of polaronic excitons in stacked quantum dots
    Gladilin, VN
    Klimin, SN
    Fomin, VM
    Devreese, JT
    [J]. PHYSICAL REVIEW B, 2004, 69 (15) : 155325 - 1
  • [6] Quantum dots - Graphene hybrid structures: interplay of optical and electrical properties
    Gromova, Yulia A.
    Alaferdov, Andrei V.
    Ermakov, Victor A.
    Bogdanov, Kirill V.
    Martynenko, Irina V.
    Orlova, Anna O.
    Maslov, Vladimir G.
    Moshkalev, Stanislav A.
    Baranov, Alexander V.
    Fedorov, Anatoly V.
    [J]. NANOPHOTONICS V, 2014, 9126
  • [7] Theory of optical properties of graphene quantum dots
    Ozfidan, Isil
    Guclu, A. D.
    Korkusinski, Marek
    Hawrylak, Pawel
    [J]. PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS, 2016, 10 (01): : 102 - 110
  • [8] Optical Properties of CdS Quantum Dots on Graphene
    Sedelnikova, O. V.
    Ewels, C. P.
    Bulusheva, L. G.
    Okotrub, A. V.
    [J]. JOURNAL OF STRUCTURAL CHEMISTRY, 2018, 59 (04) : 870 - 876
  • [9] Optical Properties of CdS Quantum Dots on Graphene
    O. V. Sedelnikova
    C. P. Ewels
    L. G. Bulusheva
    A. V. Okotrub
    [J]. Journal of Structural Chemistry, 2018, 59 : 870 - 876
  • [10] Coupled Quantum Dots in a Graphene-Based Two-Dimensional Semimetal
    Moriyama, Satoshi
    Tsuya, Daiju
    Watanabe, Eilchiro
    Uji, Shinya
    Shimizu, Maki
    Mori, Takahiro
    Yamaguchi, Tomohiro
    Ishibashi, Koji
    [J]. NANO LETTERS, 2009, 9 (08) : 2891 - 2896