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用于红外光电探测的硫族汞化物胶体量子点:从合成到器件应用

Mercury chalcogenide colloidal quantum dots for infrared photodetection: from synthesis to device applications.

作者信息

Tian Yuanyuan, Luo Hongqiang, Chen Mengyu, Li Cheng, Kershaw Stephen V, Zhang Rong, Rogach Andrey L

机构信息

School of Electronic Science and Engineering, Xiamen University, Xiamen 361005, P. R. China.

Future Display Institute of Xiamen, Xiamen 361005, P. R. China.

出版信息

Nanoscale. 2023 Apr 6;15(14):6476-6504. doi: 10.1039/d2nr07309a.

Abstract

Commercial infrared (IR) photodetectors based on epitaxial growth inorganic semiconductors, InGaAs and HgCdTe, suffer from high fabrication cost, poor compatibility with silicon integrated circuits, rigid substrates and bulky cooling systems, which leaves a large development window for the emerging solution-processable semiconductor-based photo-sensing devices. Among the solution-processable semiconductors, mercury (Hg) chalcogenide colloidal quantum dots (QDs) exhibit unique ultra-broad and tuneable photo-responses in the short-wave infrared to far-wave infrared range, and have demonstrated photo-sensing abilities comparable to the commercial products, especially with advances in high operation temperature. Here, we provide a focused review on photodetectors employing Hg chalcogenide colloidal QDs, with a comprehensive summary of the essential progress in the areas of synthesis methods of QDs, property control, device engineering, focus plane array integration, . Besides imaging demonstrations, a series of Hg chalcogenide QD photodetector based flexible, integrated, multi-functional applications are also summarized. This review shows prospects for the next-generation low-cost highly-sensitive and compact IR photodetectors based on solution-processable Hg chalcogenide colloidal QDs.

摘要

基于外延生长无机半导体(铟镓砷和碲镉汞)的商用红外(IR)光电探测器存在制造成本高、与硅集成电路兼容性差、衬底刚性以及冷却系统庞大等问题,这为新兴的基于溶液可加工半导体的光传感设备留下了巨大的发展空间。在溶液可加工半导体中,硫族汞化物胶体量子点(QDs)在短波红外到远波红外范围内表现出独特的超宽且可调节的光响应,并已展现出与商业产品相当的光传感能力,尤其是随着高工作温度方面的进展。在此,我们重点综述采用硫族汞化物胶体量子点的光电探测器,全面总结量子点合成方法、性能控制、器件工程、焦平面阵列集成等领域的重要进展。除了成像演示,还总结了一系列基于硫族汞化物量子点光电探测器的柔性、集成、多功能应用。本综述展示了基于溶液可加工硫族汞化物胶体量子点的下一代低成本、高灵敏度且紧凑的红外光电探测器的前景。

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