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Contact-engineered reconfigurable two-dimensional Schottky junction field-effect transistor with low leakage currents

Author

Listed:
  • Yaoqiang Zhou

    (The Chinese University of Hong Kong)

  • Lei Tong

    (The Chinese University of Hong Kong)

  • Zefeng Chen

    (Soochow University)

  • Li Tao

    (School of Physics, Beijing Institute of Technology)

  • Yue Pang

    (The Chinese University of Hong Kong)

  • Jian-Bin Xu

    (The Chinese University of Hong Kong)

Abstract

Two-dimensional (2D) materials have been considered promising candidates for future low power-dissipation and reconfigurable integrated circuit applications. However, 2D transistors with intrinsic ambipolar transport polarity are usually affected by large off-state leakage currents and small on/off ratios. Here, we report the realization of a reconfigurable Schottky junction field-effect transistor (SJFET) in an asymmetric van der Waals contact geometry, showing a balanced and switchable n- and p-unipolarity with the Ids on/off ratio kept >106. Meanwhile, the static leakage power consumption was suppressed to 10−5 nW. The SJFET worked as a reversible Schottky rectifier with an ideality factor of ~1.0 and a tuned rectifying ratio from 3 × 106 to 2.5 × 10−6. This empowered the SJFET with a reconfigurable photovoltaic performance in which the sign of the open-circuit voltage and photo-responsivity were substantially switched. This polarity-reversible SJFET paves an alternative way to develop reconfigurable 2D devices for low-power-consumption photovoltaic logic circuits.

Suggested Citation

  • Yaoqiang Zhou & Lei Tong & Zefeng Chen & Li Tao & Yue Pang & Jian-Bin Xu, 2023. "Contact-engineered reconfigurable two-dimensional Schottky junction field-effect transistor with low leakage currents," Nature Communications, Nature, vol. 14(1), pages 1-10, December.
  • Handle: RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-023-39705-w
    DOI: 10.1038/s41467-023-39705-w
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    References listed on IDEAS

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    1. Yuan Liu & Jian Guo & Enbo Zhu & Lei Liao & Sung-Joon Lee & Mengning Ding & Imran Shakir & Vincent Gambin & Yu Huang & Xiangfeng Duan, 2018. "Approaching the Schottky–Mott limit in van der Waals metal–semiconductor junctions," Nature, Nature, vol. 557(7707), pages 696-700, May.
    2. Fan Wu & He Tian & Yang Shen & Zhan Hou & Jie Ren & Guangyang Gou & Yabin Sun & Yi Yang & Tian-Ling Ren, 2022. "Vertical MoS2 transistors with sub-1-nm gate lengths," Nature, Nature, vol. 603(7900), pages 259-264, March.
    3. Pin-Chun Shen & Cong Su & Yuxuan Lin & Ang-Sheng Chou & Chao-Ching Cheng & Ji-Hoon Park & Ming-Hui Chiu & Ang-Yu Lu & Hao-Ling Tang & Mohammad Mahdi Tavakoli & Gregory Pitner & Xiang Ji & Zhengyang Ca, 2021. "Ultralow contact resistance between semimetal and monolayer semiconductors," Nature, Nature, vol. 593(7858), pages 211-217, May.
    4. Lingan Kong & Xiaodong Zhang & Quanyang Tao & Mingliang Zhang & Weiqi Dang & Zhiwei Li & Liping Feng & Lei Liao & Xiangfeng Duan & Yuan Liu, 2020. "Doping-free complementary WSe2 circuit via van der Waals metal integration," Nature Communications, Nature, vol. 11(1), pages 1-7, December.
    5. Xiao-Xi Li & Zhi-Qiang Fan & Pei-Zhi Liu & Mao-Lin Chen & Xin Liu & Chuan-Kun Jia & Dong-Ming Sun & Xiang-Wei Jiang & Zheng Han & Vincent Bouchiat & Jun-Jie Guo & Jian-Hao Chen & Zhi-Dong Zhang, 2017. "Gate-controlled reversible rectifying behaviour in tunnel contacted atomically-thin MoS2 transistor," Nature Communications, Nature, vol. 8(1), pages 1-7, December.
    6. Gyuho Myeong & Wongil Shin & Kyunghwan Sung & Seungho Kim & Hongsik Lim & Boram Kim & Taehyeok Jin & Jihoon Park & Taehun Lee & Michael S. Fuhrer & Kenji Watanabe & Takashi Taniguchi & Fei Liu & Sungj, 2022. "Dirac-source diode with sub-unity ideality factor," Nature Communications, Nature, vol. 13(1), pages 1-6, December.
    7. Hua-Min Li & Daeyeong Lee & Deshun Qu & Xiaochi Liu & Jungjin Ryu & Alan Seabaugh & Won Jong Yoo, 2015. "Ultimate thin vertical p–n junction composed of two-dimensional layered molybdenum disulfide," Nature Communications, Nature, vol. 6(1), pages 1-9, May.
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