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光电探测器的最新进展:从材料到结构及应用

Recent Progress in Photodetectors: From Materials to Structures and Applications.

作者信息

Ma Tianjun, Xue Ning, Muhammad Abdul, Fang Gang, Yan Jinyao, Chen Rongkun, Sun Jianhai, Sun Xuguang

机构信息

School of Electronics and Communication Engineering, Quanzhou University of Information Engineering, Quanzhou 362000, China.

State Key Laboratory of Transducer Technology Institute of Electronics, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

Micromachines (Basel). 2024 Oct 11;15(10):1249. doi: 10.3390/mi15101249.

Abstract

Photodetectors are critical components in a wide range of applications, from imaging and sensing to communications and environmental monitoring. Recent advancements in material science have led to the development of emerging photodetecting materials, such as perovskites, polymers, novel two-dimensional materials, and quantum dots, which offer unique optoelectronic properties and high tunability. This review presents a comprehensive overview of the synthesis methodologies for these cutting-edge materials, highlighting their potential to enhance photodetection performance. Additionally, we explore the design and fabrication of photodetectors with novel structures and physics, emphasizing devices that achieve high figure-of-merit parameters, such as enhanced sensitivity, fast response times, and broad spectral detection. Finally, we discuss the demonstration of new applications enabled by these advanced photodetectors, including flexible and wearable devices, next-generation imaging systems, and environmental sensing technologies. Through this review, we aim to provide insights into the current trends and future directions in the field of photodetection, guiding further research and development in this rapidly evolving area.

摘要

光电探测器是从成像、传感到通信和环境监测等广泛应用中的关键组件。材料科学的最新进展推动了新兴光电探测材料的发展,如钙钛矿、聚合物、新型二维材料和量子点,这些材料具有独特的光电特性和高度的可调性。本文综述全面概述了这些前沿材料的合成方法,突出了它们提升光电探测性能的潜力。此外,我们探讨了具有新颖结构和物理特性的光电探测器的设计与制造,重点介绍了那些实现高优值参数的器件,如增强的灵敏度、快速响应时间和宽光谱探测。最后,我们讨论了这些先进光电探测器所实现的新应用,包括柔性和可穿戴设备、下一代成像系统以及环境传感技术。通过本综述,我们旨在深入了解光电探测领域的当前趋势和未来方向,为这一快速发展领域的进一步研究和开发提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8fb/11509732/6c67caef122a/micromachines-15-01249-g001.jpg

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