Liu Jiaojiao, Chen Zhenbo, Wu Cheng, Yu Xiaoming, Yu Xuan, Chen Chao, Li Zhenhua, Qiao Qian, Cao Yu, Zhou Yingtang
School of Marine Engineering Equipment, Zhejiang Ocean University, Zhoushan, Zhejiang, 316022, China.
National Engineering Research Center for Marine Aquaculture, Zhejiang Ocean University, Zhoushan, Zhejiang, 316022, China.
Adv Mater. 2024 Oct;36(41):e2406028. doi: 10.1002/adma.202406028. Epub 2024 Aug 13.
Photodetectors (PDs) rapidly capture optical signals and convert them into electrical signals, making them indispensable in a variety of applications including imaging, optical communication, remote sensing, and biological detection. Recently, antimony selenide (SbSe) has achieved remarkable progress due to its earth-abundant, low toxicity, low price, suitable bandgap width, high absorption coefficient, and unique structural characteristics. SbSe has been extensively studied in solar cells, but there's a lack of timely updates in the field of PDs. A literature review based on SbSe PDs is urgently warranted. This review aims to provide a concise understanding of the latest progress in SbSe PDs, with a focus on the basic characteristics and the performance optimization for SbSe photoconductive-type and photodiode-type detectors, including nanostructure regulation, process optimization, and stability improvement of flexible devices. Furthermore, the application progresses of SbSe PDs in heart rate monitoring, and monolithic-integrated matrix images are introduced. Finally, this review presents various strategies with potential and feasibility to address challenges for the rapid development and commercial application of SbSe PDs.
光电探测器(PDs)能够快速捕获光信号并将其转换为电信号,这使得它们在包括成像、光通信、遥感和生物检测在内的各种应用中不可或缺。近年来,硒化锑(SbSe)因其储量丰富、毒性低、价格低廉、合适的带隙宽度、高吸收系数以及独特的结构特性而取得了显著进展。SbSe在太阳能电池领域已得到广泛研究,但在光电探测器领域却缺乏及时的更新。因此,迫切需要对基于SbSe的光电探测器进行文献综述。本综述旨在简要介绍SbSe光电探测器的最新进展,重点关注SbSe光电导型和光电二极管型探测器的基本特性以及性能优化,包括纳米结构调控、工艺优化和柔性器件的稳定性提升。此外,还介绍了SbSe光电探测器在心率监测和单片集成矩阵图像方面的应用进展。最后,本综述提出了各种具有潜力和可行性的策略,以应对SbSe光电探测器快速发展和商业应用所面临的挑战。