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通过时间分辨微波电导率研究薄膜光伏材料中的复合动力学

Recombination Dynamics in Thin-film Photovoltaic Materials via Time-resolved Microwave Conductivity.

作者信息

Guse Joanna A, Jones Timothy W, Danos Andrew, McCamey Dane R

机构信息

ARC Centre of Excellence in Exciton Science; School of Physics, University of New South Wales.

CSIRO, CSIRO Energy Centre.

出版信息

J Vis Exp. 2017 Mar 6(121):55232. doi: 10.3791/55232.

Abstract

A method for investigating recombination dynamics of photo-induced charge carriers in thin film semiconductors, specifically in photovoltaic materials such as organo-lead halide perovskites is presented. The perovskite film thickness and absorption coefficient are initially characterized by profilometry and UV-VIS absorption spectroscopy. Calibration of both laser power and cavity sensitivity is described in detail. A protocol for performing Flash-photolysis Time Resolved Microwave Conductivity (TRMC) experiments, a non-contact method of determining the conductivity of a material, is presented. A process for identifying the real and imaginary components of the complex conductivity by performing TRMC as a function of microwave frequency is given. Charge carrier dynamics are determined under different excitation regimes (including both power and wavelength). Techniques for distinguishing between direct and trap-mediated decay processes are presented and discussed. Results are modelled and interpreted with reference to a general kinetic model of photoinduced charge carriers in a semiconductor. The techniques described are applicable to a wide range of optoelectronic materials, including organic and inorganic photovoltaic materials, nanoparticles, and conducting/semiconducting thin films.

摘要

本文提出了一种研究薄膜半导体中光生电荷载流子复合动力学的方法,特别是在有机铅卤化物钙钛矿等光伏材料中的复合动力学。首先通过轮廓仪和紫外可见吸收光谱对钙钛矿薄膜厚度和吸收系数进行表征。详细描述了激光功率和腔灵敏度的校准。介绍了一种执行闪光光解时间分辨微波电导率(TRMC)实验的方案,这是一种测定材料电导率的非接触方法。给出了通过将TRMC作为微波频率的函数来确定复电导率的实部和虚部的过程。在不同的激发条件下(包括功率和波长)确定电荷载流子动力学。提出并讨论了区分直接和陷阱介导的衰减过程的技术。参考半导体中光生电荷载流子的一般动力学模型对结果进行建模和解释。所描述的技术适用于广泛的光电子材料,包括有机和无机光伏材料、纳米颗粒以及导电/半导体薄膜。

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