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基于热光电效应的自供电 Si/CdS 柔性宽带光探测器:一种低于带隙能量的光传感方法。

Self-Powered Si/CdS Flexible Photodetector with Broadband Response from 325 to 1550 nm Based on Pyro-phototronic Effect: An Approach for Photosensing below Bandgap Energy.

机构信息

School of Materials Science and Engineering, Georgia Institute of Technology, Atlanta, GA, 30332-0245, USA.

Key Laboratory of Advanced Ceramics and Machining Technology, Ministry of Education, School of Materials Science and Engineering, Tianjin University, Tianjin, 300072, China.

出版信息

Adv Mater. 2018 Mar;30(9). doi: 10.1002/adma.201705893. Epub 2018 Jan 15.

DOI:10.1002/adma.201705893
PMID:29334148
Abstract

Cadmium sulfide (CdS) has received widespread attention as the building block of optoelectronic devices due to its extraordinary optoelectronic properties, low work function, and excellent thermal and chemical stability. Here, a self-powered flexible photodetector (PD) based on p-Si/n-CdS nanowires heterostructure is fabricated. By introducing the pyro-phototronic effect derived from wurtzite structured CdS, the self-powered PD shows a broadband response range, even beyond the bandgap limitation, from UV (325 nm) to near infrared (1550 nm) under zero bias with fast response speed. The light-induced pyroelectric potential is utilized to modulate the optoelectronic processes and thus improve the photoresponse performance. Lasers with different wavelengths have different effects on the self-powered PDs and corresponding working mechanisms are carefully investigated. Upon 325 nm laser illumination, the rise time and fall time of the self-powered PD are 245 and 277 µs, respectively, which are faster than those of most previously reported CdS-based nanostructure PDs. Meanwhile, the photoresponsivity R and specific detectivity D* regarding to the relative peak-to-peak current are both enhanced by 67.8 times, compared with those only based on the photovoltaic effect-induced photocurrent. The self-powered flexible PD with fast speed, stable, and broadband response is expected to have extensive applications in various environments.

摘要

硫化镉 (CdS) 因其非凡的光电特性、低功函数以及出色的热稳定性和化学稳定性,已成为光电设备的基础材料,受到了广泛关注。在这里,我们构建了一种基于 p-Si/n-CdS 纳米线异质结的自供电柔性光电探测器 (PD)。通过引入源自纤锌矿结构 CdS 的热光电效应,自供电 PD 在零偏压下具有快速响应速度,从紫外光 (325nm) 到近红外光 (1550nm) ,展现出宽的响应范围,甚至超出了带隙限制。光致热释电势被用来调制光电过程,从而提高光电响应性能。不同波长的激光对自供电 PD 有不同的影响,我们仔细研究了相应的工作机制。在 325nm 激光照射下,自供电 PD 的上升时间和下降时间分别为 245µs 和 277µs,这比大多数之前报道的基于 CdS 纳米结构 PD 的速度都要快。同时,与仅基于光伏效应引起的光电流相比,光响应率 R 和针对相对峰峰值电流的特定探测率 D*都提高了 67.8 倍。具有快速响应速度、稳定性和宽响应范围的自供电柔性 PD 有望在各种环境中得到广泛应用。

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