Xiao Lei, Nie Changbin, Jiang Yongyi, Fu Jintao, Zhu Peng, Li Nong, Wang Guowei, Shi Haofei, Wei Xingzhan, Sun Tai
Chongqing Institute of Green and Intelligent Technology, Chinese Academy of Sciences, Chongqing 400714, China.
Chongqing School, University of Chinese Academy of Sciences, Chongqing 400714, China.
ACS Appl Mater Interfaces. 2024 Jun 12;16(23):30478-30484. doi: 10.1021/acsami.4c00956. Epub 2024 Jun 2.
Low-noise, high-performance long-wave infrared detectors play a crucial role in diverse applications, including in the industrial, security, and medical fields. However, the current performance of long-wave detectors is constrained by the noise associated with narrow bandgaps. Therefore, exploring novel heterostructures for long-wavelength infrared detection is advantageous for the development of compact and high-performance infrared sensing. In this investigation, we present a MoS/type II superlattice mixed-dimensional van der Waals barrier long-wave infrared detector (Mixed-vdWH). Through the design of the valence band barrier, substantial suppression of device dark noise is achieved, resulting in 2 orders of magnitude reduction in dark current. The device exhibits outstanding performance, with * reaching 4 × 10 Jones. This integration approach synergizes the distinctive properties of two-dimensional layered materials (2DLM) with the well-established processing techniques of traditional three-dimensional semiconductor materials, offering a compelling avenue for the large-scale integration of 2DLM.
低噪声、高性能的长波红外探测器在包括工业、安全和医疗领域在内的各种应用中发挥着关键作用。然而,目前长波探测器的性能受到与窄带隙相关的噪声的限制。因此,探索用于长波长红外探测的新型异质结构有利于紧凑型高性能红外传感的发展。在本研究中,我们展示了一种MoS/II型超晶格混合维度范德华势垒长波红外探测器(混合范德华异质结)。通过价带势垒的设计,实现了对器件暗噪声的大幅抑制,使暗电流降低了2个数量级。该器件表现出卓越的性能,比探测率达到4×10琼斯。这种集成方法将二维层状材料(2DLM)的独特性能与传统三维半导体材料成熟的加工技术相结合,为二维层状材料的大规模集成提供了一条引人注目的途径。