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Broadband polarimetric photodetector based on semimetallic 1T′-MoTe2/MoSe2 heterojunction for self-powered imaging and coded communication

  • Shuang Liu
  • , Yifan Ding
  • , Yaru Shi
  • , Yanze Feng
  • , Rong He
  • , Tianyan Yu
  • , Yuxiang Zheng
  • , Shaojuan Li
  • , Zhiping Zhang*
  • , Yi Luo
  • , Rongjun Zhang
  • , Junhao Chu
  • *此作品的通讯作者
  • Fudan University
  • CAS - Changchun Institute of Optics Fine Mechanics and Physics
  • Chinese Academy of Sciences
  • Microsystem and Terahertz Research Center

科研成果: 期刊稿件文章同行评审

摘要

The type-II semimetal 1T′-MoTe2 is considered a promising candidate for advanced optoelectronic devices due to its unique electronic band structure and distorted lattice configuration. However, its polarization-dependent optical properties have not yet been fully elucidated, and the high dark current due to its semimetal nature inhibits device performance enhancement. This work reports a band-engineered 1T′-MoTe2/MoSe2 van der Waals heterojunction capable of self-powered, broadband, and polarization-sensitive photodetection. Leveraging the asymmetric Schottky contact at the 1T′-MoTe2/MoSe2 interface, the device achieves efficient separation of photogenerated carriers, delivering a pronounced photoresponse spanning ultraviolet to near-infrared wavelengths. Under zero bias, it exhibits excellent optoelectronic performance, yielding a responsivity of up to 72.9 mA W−1 and a specific detectivity of up to 3.69 × 108 Jones. Concurrently, the in-plane optical anisotropy of the 1T′-MoTe2 endows the detector with significant polarization sensitivity, achieving a polarization extinction ratio of up to 2.0 under 785 nm. This multifunctionality enables the device to show great potential for applications in polarization-resolved infrared imaging and coded optical communications. Beyond a high-performance photodetector, this work pioneers a strategy for next-generation optoelectronic design by synergizing band engineering with crystal anisotropy in 2D materials.

源语言英语
页(从-至)220-229
页数10
期刊Journal of Materials Science and Technology
263
DOI
出版状态已出版 - 20 8月 2026
已对外发布

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