III-VI van der Waals heterostructures for sustainable energy related applications

被引:0
|
作者
Chen J. [1 ]
He X. [1 ]
Sa B. [1 ]
Zhou J. [2 ]
Xu C. [3 ]
Wen C. [1 ]
Sun Z. [2 ]
机构
[1] Key Laboratory of Eco-materials Advanced Technology, College of Materials Science and Engineering, Fuzhou University, Fuzhou
[2] School of Materials Science and Engineering, and Center for Integrated Computational Materials Science, International Research Institute for Multidisciplinary Science, Beihang University, Beijing
[3] Xiamen Talentmats New Materials Science and Technology Co., Ltd., Xiamen
来源
Nanoscale | 2019年 / 11卷 / 13期
基金
中国国家自然科学基金;
关键词
Optical properties - Gallium compounds - Van der Waals forces - Energy conservation - Energy gap - Selenium compounds - Lithium-ion batteries - Calculations - Anodes;
D O I
10.1039/C9NR00421A
中图分类号
学科分类号
摘要
van der Waals (vdW) heterostructures, achieved by binding various two-dimensional (2D) materials together via vdW interaction, expand the family of 2D materials and show fascinating possibilities. In this work, we have systematically investigated the geometrical structures, electronic structures, and optical properties of III-VI (MX, M = Ga, In and X = S, Se, Te) vdW heterostructures and their corresponding applications in sustainable energy related areas based on first principles calculations. It is highlighted that different heterostructure types can be achieved in spite of the similar electronic structures of MX monolayers. Meanwhile, the potential applications of the heterostructures for sustainable energy related areas have been further unraveled. For instance, type-II InS/GaSe and GaS/GaSe vdW heterostructures can separately produce hydrogen and oxygen at the opposite parts. On the other hand, a type-II GaSe/GaTe heterostructure with a direct band gap compatible with silicon has been proposed to be a potential solar cell material with a power conversion efficiency over 18%. Furthermore, a gapless type-IV semi-metallic InTe/GaS heterostructure has been predicted to be a Li-ion battery anode material based on three-step lithiated analysis. The present results will shed light on the sustainable energy applications of such remarkable artificial MX vdW heterostructures in the future. © The Royal Society of Chemistry.
引用
收藏
页码:6431 / 6444
页数:13
相关论文
共 50 条
  • [1] III-VI van der Waals heterostructures for sustainable energy related applications
    Chen, Jianhui
    He, Xiaojun
    Sa, Baisheng
    Zhou, Jian
    Xu, Chao
    Wen, Cuilian
    Sun, Zhimei
    NANOSCALE, 2019, 11 (13) : 6431 - 6444
  • [2] Computational mining of GeH-based Janus III-VI van der Waals heterostructures for solar cell applications
    Li, Ruifeng
    Shi, Zhichao
    Xiong, Rui
    Cui, Zhou
    Zhang, Yinggan
    Xu, Chao
    Zheng, Jingying
    Wu, Bo
    Sa, Baisheng
    Wen, Cuilian
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2023, 25 (09) : 6674 - 6683
  • [3] High-Throughput Computational Screening and Machine Learning Modeling of Janus 2D III-VI van der Waals Heterostructures for Solar Energy Applications
    Sa, Baisheng
    Hu, Rong
    Zheng, Zhao
    Xiong, Rui
    Zhang, Yinggan
    Wen, Cuilian
    Zhou, Jian
    Sun, Zhimei
    Chemistry of Materials, 2022, 34 (15): : 6687 - 6701
  • [4] High-Throughput Computational Screening and Machine Learning Modeling of Janus 2D III-VI van der Waals Heterostructures for Solar Energy Applications
    Sa, Baisheng
    Hu, Rong
    Zheng, Zhao
    Xiong, Rui
    Zhang, Yinggan
    Wen, Cuilian
    Zhou, Jian
    Sun, Zhimei
    CHEMISTRY OF MATERIALS, 2022, 34 (15) : 6687 - 6701
  • [5] Fabrication and applications of van der Waals heterostructures
    Junlei Qi
    Zongxiao Wu
    Wenbin Wang
    Kai Bao
    Lingzhi Wang
    Jingkun Wu
    Chengxuan Ke
    Yue Xu
    Qiyuan He
    InternationalJournalofExtremeManufacturing, 2023, 5 (02) : 154 - 174
  • [6] Devices and applications of van der Waals heterostructures
    Chao Li
    Peng Zhou
    David Wei Zhang
    Journal of Semiconductors, 2017, 38 (03) : 48 - 56
  • [7] Fabrication and applications of van der Waals heterostructures
    Qi, Junlei
    Wu, Zongxiao
    Wang, Wenbin
    Bao, Kai
    Wang, Lingzhi
    Wu, Jingkun
    Ke, Chengxuan
    Xu, Yue
    He, Qiyuan
    INTERNATIONAL JOURNAL OF EXTREME MANUFACTURING, 2023, 5 (02)
  • [8] Excitonic solar cells based on van der Waals heterojunctions of Janus III-VI chalcogenide monolayers
    Pan, Jinghua
    Wang, Yu
    Wang, Danni
    Ma, Zelong
    Jing, Sicheng
    Chen, Wen
    Bian, Baoan
    Liao, Bin
    NANOTECHNOLOGY, 2023, 34 (34)
  • [9] Room Temperature Electroluminescence from Mechanically Formed van der Waals III-VI Homojunctions and Heterojunctions
    Balakrishnan, Nilanthy
    Kudrynskyi, Zakhar R.
    Fay, Michael W.
    Mudd, Garry W.
    Svatek, Simon A.
    Makarovsky, Oleg
    Kovalyuk, Zakhar D.
    Eaves, Laurence
    Beton, Peter H.
    Patane, Amalia
    ADVANCED OPTICAL MATERIALS, 2014, 2 (11): : 1064 - 1069
  • [10] Carbon monochalcogenides/graphene van der Waals heterostructures for sustainable energy harvesting
    Bhojani, Amit K.
    Kagdada, Hardik L.
    Singh, Dheeraj K.
    JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS, 2025, 198