Zhang Jianbin, Duan Linfan, Zhou Nan, Zhang Lihui, Shang Conghui, Xu Hua, Yang Rusen, Wang Xiao, Li Xiaobo
Shaanxi Joint Key Laboratory of Graphene, School of Advanced Materials and Nanotechnology, Xidian University, Xi'an, 710126, P. R. China.
Shenzhen Key Laboratory of Nanobiomechanics, Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen, 518055, P. R. China.
Small. 2023 Aug;19(33):e2303335. doi: 10.1002/smll.202303335. Epub 2023 May 8.
Van der Waals heterojunction (vdWs) of 2D materials with integrated or extended superior characteristics, opening up new opportunities in functional electronic and optoelectric device applications. Exploring methods to achieve multifunctional vdWs heterojunction devices is one of the most promising prospects in this area. Herein, a diverse function of forward rectifying diode, Zener tunneling diode, and backward rectifying diodes are realized in GeAs/ReS heterojunction by modulating the doping level of GeAs. The tunneling diode presents an interesting trend forward negative differential resistance (NDR) behavior which may facilitate the application of multi-value logic. More importantly, the GeAs/ReS forward rectifying diode exhibits highly sensitive photodetection in the wide-spectrum range up to 1550 nm corresponding to a short-wave infrared (SWIR) region. In addition, as two strong anisotropic 2D materials of GeAs and ReS , the heterojunction exhibits strong polarization-sensitive photodetection behavior with a dichroic photocurrent ratio of 1.7. This work provides an effective strategy to achieve multifunctional 2D vdW heterojunction devices and develops more possibilities to broaden their functionalities and applications.
具有集成或扩展优越特性的二维材料范德华异质结(vdWs),为功能电子和光电器件应用开辟了新机遇。探索实现多功能vdWs异质结器件的方法是该领域最具前景的方向之一。在此,通过调节GeAs的掺杂水平,在GeAs/ReS异质结中实现了正向整流二极管、齐纳隧道二极管和反向整流二极管的多种功能。该隧道二极管呈现出有趣的正向负微分电阻(NDR)行为趋势,这可能有利于多值逻辑的应用。更重要的是,GeAs/ReS正向整流二极管在高达1550 nm的宽光谱范围内表现出高度灵敏的光电探测,该范围对应短波红外(SWIR)区域。此外,作为两种强各向异性的二维材料GeAs和ReS,该异质结表现出强烈的偏振敏感光电探测行为,二向色光电流比为1.7。这项工作提供了一种实现多功能二维vdW异质结器件的有效策略,并为拓宽其功能和应用开发了更多可能性。