Panda Jaganandha, Sahu Satyam, Haider Golam, Thakur Mukesh Kumar, Mosina Kseniia, Velický Matěj, Vejpravova Jana, Sofer Zdeněk, Kalbáč Martin
J. Heyrovský Institute of Physical Chemistry, Dolejskova 3, 182 23 Prague 8, Czech Republic.
Department of Biophysics, Chemical and Macromolecular Physics, Faculty of Mathematics and Physics, Charles University, Ke Karlovu 3, 121 16 Prague 2, Czech Republic.
ACS Appl Mater Interfaces. 2024 Jan 10;16(1):1033-1043. doi: 10.1021/acsami.3c13552. Epub 2023 Dec 26.
Recent progress in polarization-resolved photodetection based on low-symmetry 2D materials has formed the basis of cutting-edge optoelectronic devices, including quantum optical communication, 3D image processing, and sensing applications. Here, we report an optical polarization-resolving photodetector (PD) fabricated from multilayer semiconducting CrSBr single crystals with high structural anisotropy. We have demonstrated self-powered photodetection due to the formation of Schottky junctions at the Au-CrSBr interfaces, which also caused the photocurrent to display a position-sensitive and binary nature. The self-biased CrSBr PD showed a photoresponsivity of ∼0.26 mA/W with a detectivity of 3.4 × 10 Jones at 514 nm excitation of fluency (0.42 mW/cm) under ambient conditions. The optical polarization-induced photoresponse exhibits a large dichroic ratio of 3.4, while the polarization is set along the and the -axes of single-crystalline CrSBr. The PD also showed excellent stability, retaining >95% of the initial photoresponsivity in ambient conditions for more than five months without encapsulation. Thus, we demonstrate CrSBr as a fascinating material for ultralow-powered optical polarization-resolving optoelectronic devices for cutting-edge technology.
基于低对称性二维材料的偏振分辨光探测技术的最新进展,已成为包括量子光通信、3D图像处理和传感应用在内的前沿光电器件的基础。在此,我们报告一种由具有高结构各向异性的多层半导体CrSBr单晶制成的光学偏振分辨光电探测器(PD)。我们已经证明,由于在Au-CrSBr界面处形成了肖特基结,从而实现了自供电光探测,这也使得光电流呈现出位置敏感和二元特性。在环境条件下,在514 nm激发(通量为0.42 mW/cm²)时,自偏置的CrSBr PD的光响应度约为0.26 mA/W,探测率为3.4×10 Jones。当偏振沿单晶CrSBr的a轴和c轴设置时,光偏振诱导的光响应表现出3.4的大二向色比。该PD还表现出优异的稳定性,在未封装的环境条件下,五个多月内初始光响应度保持>95%。因此,我们证明CrSBr是一种用于前沿技术的超低功耗光学偏振分辨光电器件的迷人材料。