Influence of thiourea concentration during deposition of a CdS buffer layer on the electric properties of Cu2SnS3 solar cells

Ayaka Kanai, Soichiro Saito, Araki Hideaki, Kunihiko Tanaka
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Abstract

Abstract The p–n interface state and depletion layer region of solar cells were investigated using electrochemical impedance spectroscopy (EIS) measurements to elucidate the effect of varying thiourea (TU) concentrations in chemical bath deposition (CBD) on the photovoltaic properties of Cu 2 SnS 3 (CTS) solar cells. The photoconversion efficiency (PCE) increased as the TU concentration increased, peaking at 0.16 M and decreasing thereafter. Additionally, the constant phase element- p value, which is indicative of the p–n interface state in CTS solar cells, exhibited a similar trend to that of the PCE of CTS solar cells with increasing TU concentration. The decrease in the PCE was due to the electron recombination that occurred at the p–n interface of CTS solar cells with increasing TU concentrations. Therefore, to improve the PCE of the CTS solar cells, the TU concentration in CBD must be optimized because the p–n interface state is sensitive to changes in the growth conditions of CdS films. By studying the effects on the p–n interface state and depletion layer in CTS solar cells using EIS measurements, useful knowledge can be obtained to increase the PCE of all-sulfide-compound solar cells using n-type CdS films as well as CTS.
CdS缓冲层沉积过程中硫脲浓度对Cu2SnS3太阳能电池电性能的影响
摘要利用电化学阻抗谱(EIS)研究了太阳能电池的p-n界面态和耗尽层区域,以阐明化学浴沉积(CBD)中不同硫脲(TU)浓度对CTS太阳能电池光伏性能的影响。光转换效率(PCE)随TU浓度的增加而增加,在0.16 M处达到峰值,之后逐渐下降。此外,随着TU浓度的增加,反映CTS太阳电池中p - n界面状态的恒相元- p值与CTS太阳电池的PCE值呈现相似的趋势。PCE的下降是由于碳纳米管太阳能电池的p-n界面随着TU浓度的增加而发生电子重组。因此,为了提高CTS太阳能电池的PCE,必须优化CBD中的TU浓度,因为p-n界面态对CdS膜生长条件的变化很敏感。通过利用EIS测量研究对CTS太阳能电池中p-n界面态和耗尽层的影响,可以获得使用n型CdS薄膜和CTS提高全硫化物化合物太阳能电池PCE的有用知识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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