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Transient terahertz photoconductivity measurements of minority-carrier lifetime in tin sulfide thin films: Advanced metrology for an early stage photovoltaic material

机译:瞬态太赫兹光电导率测量硫化锡薄膜中少数载流子寿命:早期光伏材料的先进计量学

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摘要

Materials research with a focus on enhancing the minority-carrier lifetime of the light-absorbing semiconductor is key to advancing solar energy technology for both early stage and mature material platforms alike. Tin sulfide (SnS) is an absorber material with several clear advantages for manufacturing and deployment, but the record power conversion efficiency remains below 5%. We report measurements of bulk and interface minority-carrier recombination rates in SnSthin films using optical-pump, terahertz-probe transient photoconductivity (TPC) measurements. Post-growth thermal annealing in H[subscript 2]S gas increases the minority-carrier lifetime, and oxidation of the surface reduces the surface recombination velocity. However, the minority-carrier lifetime remains below 100 ps for all tested combinations of growth technique and post-growth processing. Significant improvement in SnSsolar cell performance will hinge on finding and mitigating as-yet-unknown recombination-active defects. We describe in detail our methodology for TPC experiments, and we share our data analysis routines in the form freely available software.
机译:专注于延长吸光半导体的少数载流子寿命的材料研究对于推动早期和成熟材料平台的太阳能技术都是至关重要的。硫化锡(SnS)是一种吸收剂材料,在制造和部署方面具有几个明显的优势,但创纪录的功率转换效率仍低于5%。我们报告使用光泵,太赫兹探针瞬态光电导(TPC)测量来测量SnSthin膜中的本体和界面少数载流子复合率。 H [下标2] S气体中的生长后热退火可增加少数载流子寿命,并且表面的氧化会降低表面复合速度。但是,对于生长技术和生长后处理的所有测试组合,少数载流子寿命都保持在100 ps以下。 SnSsolar细胞性能的显着改善将取决于发现和缓解迄今未知的重组活性缺陷。我们详细介绍了TPC实验的方法,并以免费软件的形式共享了数据分析例程。

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