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Air-Stable Low-Symmetry Narrow-Bandgap 2D Sulfide Niobium for Polarization Photodetection

  • Yang Wang
  • , Peisong Wu
  • , Zhen Wang*
  • , Man Luo*
  • , Fang Zhong
  • , Xun Ge
  • , Kun Zhang
  • , Meng Peng
  • , Yan Ye
  • , Qing Li
  • , Haonan Ge
  • , Jiafu Ye
  • , Ting He
  • , Yunfeng Chen
  • , Tengfei Xu
  • , Chenhui Yu
  • , Yueming Wang
  • , Zhigao Hu
  • , Xiaohao Zhou
  • , Chongxin Shan
  • Mingsheng Long, Peng Wang, Peng Zhou*, Weida Hu*
*此作品的通讯作者
  • Fudan University
  • University of Chinese Academy of Sciences
  • CAS - Shanghai Institute of Technical Physics
  • Nantong University
  • East China Normal University
  • Zhengzhou University

科研成果: 期刊稿件文章同行评审

摘要

Low-symmetry 2D materials with unique anisotropic optical and optoelectronic characteristics have attracted a lot of interest in fundamental research and manufacturing of novel optoelectronic devices. Exploring new and low-symmetry narrow-bandgap 2D materials will be rewarding for the development of nanoelectronics and nano-optoelectronics. Herein, sulfide niobium (NbS3), a novel transition metal trichalcogenide semiconductor with low-symmetry structure, is introduced into a narrowband 2D material with strong anisotropic physical properties both experimentally and theoretically. The indirect bandgap of NbS3 with highly anisotropic band structures slowly decreases from 0.42 eV (monolayer) to 0.26 eV (bulk). Moreover, NbS3 Schottky photodetectors have excellent photoelectric performance, which enables fast photoresponse (11.6 µs), low specific noise current (4.6 × 10−25 A2 Hz−1), photoelectrical dichroic ratio (1.84) and high-quality reflective polarization imaging (637 nm and 830 nm). A room-temperature specific detectivity exceeding 107 Jones can be obtained at the wavelength of 3 µm. These excellent unique characteristics will make low-symmetry narrow-bandgap 2D materials become highly competitive candidates for future anisotropic optical investigations and mid-infrared optoelectronic applications.

源语言英语
文章编号2005037
期刊Advanced Materials
32
45
DOI
出版状态已出版 - 12 11月 2020
已对外发布

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