Long Mingsheng, Wang Yang, Wang Peng, Zhou Xiaohao, Xia Hui, Luo Chen, Huang Shenyang, Zhang Guowei, Yan Hugen, Fan Zhiyong, Wu Xing, Chen Xiaoshuang, Lu Wei, Hu Weida
State Key Laboratory of Infrared Physics , Shanghai Institute of Technical Physics, Chinese Academy of Sciences , 500 Yu Tian Road , Shanghai 200083 , China.
University of Chinese Academy of Sciences , 19 Yu Quan Road , Beijing 100049 , China.
ACS Nano. 2019 Feb 26;13(2):2511-2519. doi: 10.1021/acsnano.8b09476. Epub 2019 Feb 6.
A long-wavelength infrared photodetector based on two-dimensional materials working at room temperature would have wide applications in many aspects in remote sensing, thermal imaging, biomedical optics, and medical imaging. However, sub-bandgap light detection in graphene and black phosphorus has been a long-standing scientific challenge because of their low photoresponsivity, instability in the air, and high dark current. In this study, we report a highly sensitive, air-stable, and operable long-wavelength infrared photodetector at room temperature based on PdSe phototransistors and their heterostructure. A high photoresponsivity of ∼42.1 AW (at 10.6 μm) was demonstrated, which is an order of magnitude higher than the current record of platinum diselenide. Moreover, the dark current and noise power density were suppressed effectively by fabricating a van der Waals heterostructure. This work fundamentally contributes to establishing long-wavelength infrared detection by PdSe at the forefront of long-IR two-dimensional-materials-based photonics.
一种基于二维材料的室温工作的长波长红外光电探测器在遥感、热成像、生物医学光学和医学成像等诸多方面都有广泛应用。然而,由于石墨烯和黑磷的光响应率低、在空气中不稳定以及暗电流高,其亚带隙光探测一直是一个长期存在的科学挑战。在本研究中,我们报道了一种基于PdSe光电晶体管及其异质结构的室温下高灵敏度、空气稳定且可操作的长波长红外光电探测器。展示了约42.1 A/W(在10.6μm处)的高光响应率,比目前二硒化铂的记录高出一个数量级。此外,通过制造范德华异质结构有效抑制了暗电流和噪声功率密度。这项工作从根本上推动了基于PdSe的长波长红外探测在基于二维材料的长红外光子学前沿领域的确立。