Tunable Optoelectronic Properties of WS2 by Local Strain Engineering and Folding

被引:52
作者
Khan, Ahmed Raza [1 ,2 ]
Lu, Teng [3 ]
Ma, Wendi [1 ]
Lu, Yuerui [1 ]
Liu, Yun [3 ]
机构
[1] Australian Natl Univ, Coll Engn & Comp Sci, Res Sch Elect Energy & Mat Engn, Canberra, ACT 2601, Australia
[2] Univ Engn & Technol Rachna Coll, Dept Ind & Mfg Engn, Lahore 54700, Pakistan
[3] Australian Natl Univ, Res Sch Chem, Canberra, ACT 2601, Australia
关键词
2D materials; charge transfer; strain engineering; WS; (2); BAND-GAP; MONOLAYER MOS2; TRANSITION; GRAPHENE; LAYERS; MICROSCOPY; EMITTERS;
D O I
10.1002/aelm.201901381
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Local strain engineering is an exciting approach to tune optoelectronic properties of materials. Two-dimensional (2D) materials such as 2D transition metal dichalcogenides (TMDs) are particularly well-suited for this purpose due to their high flexibility and deformability. Local strain engineering in 2D TMDs is typically achieved via strained wrinkles. Wrinkles on thick TMD layers have been reported to show interesting photoluminescence enhancement due to bandgap modulation and funneling effect. However, the wrinkles in ultrathin TMDs are not investigated because they can easily fall down to form folds. Both wrinkles and folds are achieved simultaneously in 1-3L tungsten disulfide (WS2) using a new fabrication technique. A layer-dependent reduction in surface potential is found for both folded layers and perfect packed layers due to the dominant interlayer screening effect. The strain produced from the wrinkles modulates the semiconductive junction properties significantly. Thermoionic modeling suggests that strained (1.6%) wrinkles can lower the Schottky barrier height (SBH) by 20%. Upon illumination, SBH reduces significantly due to photogenerated carriers. This is an important advance toward controlling the optoelectronic properties of 2D TMDs via strain engineering, with applications for electronics and optoelectronics devices.
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页数:8
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共 67 条
  • [31] Surface potential and interlayer screening effects of few-layer MoS2 nanoflakes
    Li, Yang
    Xu, Cheng-Yan
    Zhen, Liang
    [J]. APPLIED PHYSICS LETTERS, 2013, 102 (14)
  • [32] Elastic Properties of Chemical-Vapor-Deposited Monolayer MoS2, WS2, and Their Bilayer Heterostructures
    Liu, Kai
    Yan, Qimin
    Chen, Michelle
    Fan, Wen
    Sun, Yinghui
    Suh, Joonki
    Fu, Deyi
    Lee, Sangwook
    Zhou, Jian
    Tongay, Sefaattin
    Ji, Jie
    Neaton, Jeffrey B.
    Wu, Junqiao
    [J]. NANO LETTERS, 2014, 14 (09) : 5097 - 5103
  • [33] Highly Efficient and Air-Stable Infrared Photodetector Based on 2D Layered Graphene-Black Phosphorus Heterostructure
    Liu, Yan
    Shivananju, Bannur Nanjunda
    Wang, Yusheng
    Zhang, Yupeng
    Yu, Wenzhi
    Xiao, Si
    Sun, Tian
    Ma, Weiliang
    Mu, Haoran
    Lin, Shenghuang
    Zhang, Han
    Lu, Yuerui
    Qiu, Cheng-Wei
    Li, Shaojuan
    Bao, Qiaoliang
    [J]. ACS APPLIED MATERIALS & INTERFACES, 2017, 9 (41) : 36137 - 36145
  • [34] Light-Matter Interactions in Phosphorene
    Lu, Junpeng
    Yang, Jiong
    Carvalho, Alexandra
    Liu, Hongwei
    Lu, Yuerui
    Sow, Chorng Haur
    [J]. ACCOUNTS OF CHEMICAL RESEARCH, 2016, 49 (09) : 1806 - 1815
  • [35] Above-Band Gap Photoinduced Stabilization of Engineered Ferroelectric Domains
    Mai, Haoxin
    Lu, Teng
    Li, Qian
    Liu, Zhifu
    Li, Yongxiang
    Kremer, Felipe
    Li, Li
    Withers, Ray L.
    Wen, Haidan
    Liu, Yun
    [J]. ACS APPLIED MATERIALS & INTERFACES, 2018, 10 (15) : 12781 - 12789
  • [36] Kelvin probe force microscopy and its application
    Melitz, Wilhelm
    Shen, Jian
    Kummel, Andrew C.
    Lee, Sangyeob
    [J]. SURFACE SCIENCE REPORTS, 2011, 66 (01) : 1 - 27
  • [37] Hierarchy of graphene wrinkles induced by thermal strain engineering
    Meng, Lan
    Su, Ying
    Geng, Dechao
    Yu, Gui
    Liu, Yunqi
    Dou, Rui-Fen
    Nie, Jia-Cai
    He, Lin
    [J]. APPLIED PHYSICS LETTERS, 2013, 103 (25)
  • [38] Optical imaging of strain in two-dimensional crystals
    Mennel, Lukas
    Furchi, Marco M.
    Wachter, Stefan
    Paur, Matthias
    Polyushkin, Dmitry K.
    Mueller, Thomas
    [J]. NATURE COMMUNICATIONS, 2018, 9
  • [39] Neupane G. P., 2019, NANOMATER SCI, V1, P246
  • [40] KELVIN PROBE FORCE MICROSCOPY
    NONNENMACHER, M
    OBOYLE, MP
    WICKRAMASINGHE, HK
    [J]. APPLIED PHYSICS LETTERS, 1991, 58 (25) : 2921 - 2923