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用于快速扩展短波红外光电探测器的碲化银胶体量子点固体

Silver Telluride Colloidal Quantum Dot Solid for Fast Extended Shortwave Infrared Photodetector.

作者信息

Ahn Yongnam, Eom So Young, Kim Gahyeon, Lee Jin Hyeok, Kim Beomkwan, Kim Dongeon, Si Min-Jae, Yang Minjung, Jung Yujin, Kim Bo Seon, Chung Yoon Jang, Jeong Kwang Seob, Baek Se-Woong

机构信息

Department of Chemical and Biological Engineering, Korea University, Seoul, 02841, Republic of Korea.

Department of Chemistry, Korea University, Seoul, 02841, Republic of Korea.

出版信息

Adv Sci (Weinh). 2024 Nov;11(44):e2407453. doi: 10.1002/advs.202407453. Epub 2024 Oct 7.

Abstract

Extended shortwave infrared (eSWIR) photodetectors that employ solution-processable semiconductors have attracted attention for use in applications such as ranging, night vision, and gas detection. Colloidal quantum dots (CQDs) are promising materials with facile bandgap tunability across the visible-to-mid-infrared wavelengths. However, toxic elements, such as Hg and Pb, and the slow response time of CQD-based IR photodetectors, limit their commercial viability. This article presents a novel eSWIR photodetector that is fabricated using silver telluride (AgTe) CQDs. Effective thiolate ligand exchange enables a lower trap density and improved carrier mobility in CQD solids. Furthermore, a vertical p-n photodiode architecture with a favorable energy-level landscape is utilized to facilitate charge extraction, resulting in a fast, room-temperature-operable, and toxic-element-free CQD photodetector. The best eSWIR AgTe CQD photodetector exhibits a fall time of 72 ns, representing the fastest response time among all prior CQD-based eSWIR photodetectors, including those containing toxic elements, such as Pb and Hg.

摘要

采用可溶液处理半导体的扩展短波红外(eSWIR)光电探测器,因其可用于测距、夜视和气体检测等应用而受到关注。胶体量子点(CQD)是很有前景的材料,在可见到中红外波长范围内具有易于调节的带隙。然而,诸如汞和铅等有毒元素以及基于CQD的红外光电探测器的缓慢响应时间,限制了它们的商业可行性。本文介绍了一种使用碲化银(AgTe)CQD制造的新型eSWIR光电探测器。有效的硫醇盐配体交换可降低CQD固体中的陷阱密度并提高载流子迁移率。此外,利用具有良好能级分布的垂直p-n光电二极管结构来促进电荷提取,从而得到一种快速、可在室温下工作且无有毒元素的CQD光电探测器。性能最佳的eSWIR AgTe CQD光电探测器的下降时间为72纳秒,这是所有先前基于CQD的eSWIR光电探测器(包括那些含有铅和汞等有毒元素的探测器)中最快的响应时间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2eaf/11600258/2f50a94d02e7/ADVS-11-2407453-g003.jpg

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