Zhao Yingjie, Yin Xing, Li Pengwei, Ren Ziqiu, Gu Zhenkun, Zhang Yiqiang, Song Yanlin
College of Chemistry, Zhengzhou University, Zhengzhou, 450001, People's Republic of China.
Henan Institute of Advanced Technology, Zhengzhou University, Zhengzhou, 450001, People's Republic of China.
Nanomicro Lett. 2023 Jul 29;15(1):187. doi: 10.1007/s40820-023-01161-y.
Multifunctional photodetectors boost the development of traditional optical communication technology and emerging artificial intelligence fields, such as robotics and autonomous driving. However, the current implementation of multifunctional detectors is based on the physical combination of optical lenses, gratings, and multiple photodetectors, the large size and its complex structure hinder the miniaturization, lightweight, and integration of devices. In contrast, perovskite materials have achieved remarkable progress in the field of multifunctional photodetectors due to their diverse crystal structures, simple morphology manipulation, and excellent optoelectronic properties. In this review, we first overview the crystal structures and morphology manipulation techniques of perovskite materials and then summarize the working mechanism and performance parameters of multifunctional photodetectors. Furthermore, the fabrication strategies of multifunctional perovskite photodetectors and their advancements are highlighted, including polarized light detection, spectral detection, angle-sensing detection, and self-powered detection. Finally, the existing problems of multifunctional detectors and the perspectives of their future development are presented.
多功能光电探测器推动了传统光通信技术以及机器人技术和自动驾驶等新兴人工智能领域的发展。然而,目前多功能探测器的实现是基于光学透镜、光栅和多个光电探测器的物理组合,其大尺寸和复杂结构阻碍了设备的小型化、轻量化和集成化。相比之下,钙钛矿材料因其多样的晶体结构、简单的形貌调控以及优异的光电性能,在多功能光电探测器领域取得了显著进展。在这篇综述中,我们首先概述了钙钛矿材料的晶体结构和形貌调控技术,然后总结了多功能光电探测器的工作机制和性能参数。此外,还重点介绍了多功能钙钛矿光电探测器的制备策略及其进展,包括偏振光检测、光谱检测、角度传感检测和自供电检测。最后,阐述了多功能探测器存在的问题及其未来发展前景。