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Barrier-Type Room-Temperature Infrared Detector Based on 2D/3D van der Waals Heterostructures

  • Hanxue Jiao
  • , Shukui Zhang
  • , Yan Chen*
  • , Wenxin Li
  • , Yahui Wang
  • , Haoran Yan
  • , Shuaiqin Wu
  • , Tie Lin
  • , Hong Shen
  • , Xiangjian Meng
  • , Xudong Wang*
  • , Junhao Chu
  • , Jianlu Wang*
  • *此作品的通讯作者
  • Fudan University
  • CAS - Shanghai Institute of Technical Physics
  • University of Chinese Academy of Sciences
  • Shanghai Key Laboratory of Optical Coatings and Spectral Modulation

科研成果: 期刊稿件文章同行评审

摘要

Semiconductor heterostructures play a crucial role in optoelectronics. The interface mismatch of heterogeneous materials leads to nonideal carrier transport. In infrared detectors, the interface mismatch results in a high dark current, which leads to low sensitivity, operating temperature, and large size. Here, van der Waals (vdWs) heterogeneous integration is introduced into mercury cadmium telluride (MCT)-based infrared detectors. Two types of vdWs barrier structure MCT-based devices are demonstrated, including a graphene/SnS2/HgCdTe vdWs device and a graphene/MoSe2/HgCdTe vdWs device, to achieve high-operating-temperature (HOT) mid-wave infrared detection. Thanks to vdWs integration, unipolar barrier structures with high-quality interfaces are achieved, showing effective suppression of dark current at high temperatures. The dark current density of the MCT-based vdWs detector is ≈10−2 A cm−2 at room temperature. The MCT-based vdWs barrier detectors have great potential for uncooled infrared detection. The detectors show a sensitive response to mid-wave infrared irradiation with a high detectivity of 3.01 × 1010 cm Hz1/2 W−1 and a high external quantum efficiency of 60.9% at room temperature. The findings present a versatile strategy for fabricating a superior interface for high-operating-temperature infrared photodetectors with high sensitivity and small size. It makes a significant step forward in the development route of photodetectors.

源语言英语
文章编号e00950
期刊Laser and Photonics Reviews
19
22
DOI
出版状态已出版 - 19 11月 2025
已对外发布

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