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SCAPS关于各种空穴传输层对基于环保型CZTS的高效31.86%太阳能电池影响的研究。

SCAPS study on the effect of various hole transport layer on highly efficient 31.86% eco-friendly CZTS based solar cell.

作者信息

Ranjan Rahutosh, Anand Nikhil, Tripathi Manish Nath, Srivastava Neelabh, Sharma Arvind Kumar, Yoshimura Masamichi, Chang Li, Tiwari Rajanish N

机构信息

Department of Physics, School of Physical Sciences, Mahatma Gandhi Central University, Motihari, India.

Department of Chemistry, School of Physical Sciences, Mahatma Gandhi Central University, Motihari, India.

出版信息

Sci Rep. 2023 Oct 27;13(1):18411. doi: 10.1038/s41598-023-44845-6.

Abstract

Copper Zinc Tin Sulphide (CZTS) is a propitious semiconductor for active absorber material in thin-film solar cells (SCs). Here, SC architecture comprising FTO/ZnS/CZTS/variable HTLs/Au is discussed. Fluorine-doped tin oxide (FTO) and gold (Au) are used as front and back contacts, respectively. Zinc sulphide (ZnS) is used as an active electron transport layer (ETL), while different Cu-based materials (CuO, CuO, CuI, and CuSCN) are used as hole transport layers (HTL). A one-dimensional solar cell capacitance simulator (SCAPS-1D) is utilized to simulate the SC structure. Among different Cu-based HTLs, CuO is preferred as a potential candidate for high cell performance of CZTS-based SC. The effects of various layer parameters such as thickness, doping density, and carrier concentrations, electron affinity of HTL and absorber, respectively, are also discussed. After optimization of the device, variation of operating temperature and the effect of series and shunt resistance are also taken into consideration. The optimized results of thickness and acceptor concentration (N) of absorber material are 1.5 µm and approx. 1.0 × 10 cm, respectively. In addition, the function of HTL (with and without) in the designed SC structure is also studied. Capacitance-voltage (C-V) characteristics are also discussed to get an insight of built-in potential. We have achieved cell performances viz. efficiency = 31.86%, short circuit current density = 32.05 mA/cm, open circuit voltage = 1.19 V, and fill factor = 83.37%.

摘要

硫化铜锌锡(CZTS)是薄膜太阳能电池(SCs)中活性吸收材料的一种理想半导体。在此,讨论了由FTO/ZnS/CZTS/可变空穴传输层(HTLs)/Au组成的太阳能电池结构。氟掺杂氧化锡(FTO)和金(Au)分别用作前电极和后电极。硫化锌(ZnS)用作活性电子传输层(ETL),而不同的铜基材料(CuO、CuO、CuI和CuSCN)用作空穴传输层(HTL)。利用一维太阳能电池电容模拟器(SCAPS-1D)对太阳能电池结构进行模拟。在不同的铜基HTLs中,CuO作为基于CZTS的太阳能电池高电池性能的潜在候选材料更受青睐。还讨论了各种层参数的影响,如厚度、掺杂密度和载流子浓度,以及HTL和吸收体的电子亲和势。在器件优化后,还考虑了工作温度的变化以及串联电阻和并联电阻的影响。吸收体材料的厚度和受主浓度(N)的优化结果分别为1.5 µm和约1.0×10 cm。此外,还研究了设计的太阳能电池结构中HTL(有和没有)的作用。还讨论了电容-电压(C-V)特性以深入了解内建电势。我们实现了电池性能,即效率 = 31.86%,短路电流密度 = 32.05 mA/cm,开路电压 = 1.19 V,填充因子 = 83.37%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f28/10611726/25748d9305d1/41598_2023_44845_Fig1_HTML.jpg

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