用于 Perovskite 单晶光电探测器的空间电极调制策略

IF 6.7 1区 物理与天体物理 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Yazhou Yang, Yuankai Song, Jiayi Li, Zhenglan Ye, Dan Chen, Qinxing Huang, Yupeng Zhu, Congwei Shi, Xiangquan Liu, Guangze Zhang, Tao Men, Yuhua Zuo*, Jun Zheng*, Lei Zhao, Chunlan Zhou*, Zhi Liu and Buwen Cheng, 
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引用次数: 0

摘要

透镜以其优异的材料特性和丰富的调谐能力满足了光电探测器(PD)的多种需求。本文提出了空间电极调制策略,设计并制备了两种可调制探测波段并极大增强光谱响应的过氧化物光电探测器。对于光窗电极包晶光致发光器件,非对称电场可以提高载流子收集效率,并消除光致发光器件在高响应和窄带之间的权衡,同时表现出高光谱选择性(半最大全宽<14 nm)和高外部量子效率(EQE),在 570 nm 波长下达到 78.5%。点电极结构 PD 实现了宽带检测,这归功于局部电场增强效应,实现了额外的雪崩增益,EQE 高达 300%,响应时间更快,约为 42 μs。此外,我们还为过氧化物器件开发了一种封装工艺,使其能够在潮湿环境中直接使用。所提出的空间电极调制策略为包晶石光电器件引入了一种新的设计范式,为更广泛的应用铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Spatial Electrode Modulation Strategy for the Perovskite Single Crystal Photodetector

Spatial Electrode Modulation Strategy for the Perovskite Single Crystal Photodetector

Perovskite meets the diverse needs of photodetectors (PDs) with excellent material properties and wealth of tuning capabilities. Herein, proposed by the spatial electrode modulation strategy, two kinds of perovskite PDs were designed and fabricated, which can modulate the detection bands and enhance the spectrum response greatly. For the light window electrode perovskite PDs, the asymmetric electric field can enhance the carrier collection efficiency and unravel the trade-off between high response and narrowband of PDs, exhibiting both high spectral selectivity (full width at half-maximum <14 nm) and high external quantum efficiency (EQE) of 78.5% at 570 nm. For the dot electrode structure PDs, broadband detection is achieved, attributing to the local electric field enhancement effect, achieving extra avalanche gain with a high EQE of 300% and faster response time of about 42 μs. Furthermore, we developed a packaging process for perovskite devices that enables their direct use in a humid environment. The proposed spatial electrode modulation strategy introduces a novel design paradigm for perovskite optoelectronic devices, paving the way for broader applications.

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来源期刊
ACS Photonics
ACS Photonics NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
11.90
自引率
5.70%
发文量
438
审稿时长
2.3 months
期刊介绍: Published as soon as accepted and summarized in monthly issues, ACS Photonics will publish Research Articles, Letters, Perspectives, and Reviews, to encompass the full scope of published research in this field.
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