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热光电子和压光电子效应增强自供电有机/无机光电探测器的性能。

Enhanced Performance of a Self-Powered Organic/Inorganic Photodetector by Pyro-Phototronic and Piezo-Phototronic Effects.

机构信息

School of Electronic and Information Engineering, Xi'an Jiaotong University, Xi'an, 710049, China.

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

出版信息

Adv Mater. 2017 Jun;29(23). doi: 10.1002/adma.201606698. Epub 2017 Apr 11.

Abstract

Self-powered photodetectors (PDs) have long been realized by utilizing photovoltaic effect and their performances can be effectively enhanced by introducing the piezo-phototronic effect. Recently, a novel pyro-phototronic effect is invented as an alternative approach for performance enhancement of self-powered PDs. Here, a self-powered organic/inorganic PD is demonstrated and the influences of externally applied strain on the pyro-phototronic and the photovoltaic effects are thoroughly investigated. Under 325 nm 2.30 mW cm UV illumination and at a -0.45% compressive strain, the PD's photocurrent is dramatically enhanced from ≈14.5 to ≈103 nA by combining the pyro-phototronic and piezo-phototronic effects together, showing a significant improvement of over 600%. Theoretical simulations have been carried out via the finite element method to propose the underlying working mechanism. Moreover, the pyro-phototronic effect can be introduced by applying a -0.45% compressive strain to greatly enhance the PD's response to 442 nm illumination, including photocurrent, rise time, and fall time. This work provides in-depth understandings about the pyro-phototronic and the piezo-phototronic effects on the performances of self-powered PD to light sources with different wavelengths and indicates huge potential of these two effects in optoelectronic devices.

摘要

自供电光电探测器(PD)长期以来一直通过利用光伏效应来实现,并且通过引入压光电效应可以有效地增强其性能。最近,发明了一种新颖的热光电效应,作为增强自供电 PD 性能的替代方法。在这里,演示了一种自供电有机/无机 PD,并彻底研究了外部施加应变对热光电效应和光伏效应的影响。在 325nm 2.30mWcm 的 UV 照明下,并施加-0.45%的压缩应变时,PD 的光电流通过结合热光电效应和压光电效应从约 14.5 显著增强至约 103nA,显示出超过 600%的显著改善。通过有限元方法进行了理论模拟,以提出基本的工作机制。此外,通过施加-0.45%的压缩应变可以引入热光电效应,从而大大增强 PD 对 442nm 照明的响应,包括光电流、上升时间和下降时间。这项工作深入了解了热光电效应和压光电效应对不同波长光源的自供电 PD 性能的影响,并表明这两种效应在光电设备中有巨大的潜力。

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