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首页> 外文期刊>Materials Focus >Successive Ionic Layer Absorption and Reaction Deposited SnS and CdZnS for Efficiency Enhancement of MAPbl_3 Solar Cell by Numerical Analysis
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Successive Ionic Layer Absorption and Reaction Deposited SnS and CdZnS for Efficiency Enhancement of MAPbl_3 Solar Cell by Numerical Analysis

机译:通过数值分析,连续离子层吸收和反应沉积SNS和CDZNS的MapBl_3太阳能电池的效率增强

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摘要

In this paper alternate low cost, easy to fabricate hole transport layer (HTL) and electron transport layer was proposed for efficiency enhancement of lead halide perovskite solar cell (LHPSC). SnS and Zn doped CdS thin film was prepared by successive ionic layer absorption and reaction(SILAR) method at room temperature. X-ray diffraction (XRD) confirms herzenbegrite orthorhombic crystal structure for SnS thin film and hexagonal wurtzite structure of CdS. To validate the concept of efficiency enhancement for experimentally designed SnS thin film as HTL and Zn doped CdS asETL, solar cell capacitance simulation (SCAPS) was used. In SCAPS first result for experimental J–V of LHPSC with power conversion efficiency (PCE) 19.7%, Voc of 1.08 V, Jsc of 23.8 mA/cm2 and FF of 76% were produced. NextSnS was applied as HTL and Zn doped CdS as ETL in SCAPS to analyze the effect. After optimization LHPSC solar cell in SCAPS reached up to a value of PCE 23.62% with Voc of 1.10 V, Jsc 25.53 mA/cm2 and FF 84.32%.
机译:本文替代的低成本,易于制造的空穴传输层(HTL)和电子传输层,用于氢卤化铅钙钛矿太阳能电池(LHPSC)的效率增强。通过在室温下连续的离子层吸收和反应(Sill)方法制备SNS和Zn掺杂Cds薄膜。 X射线衍射(XRD)证实了SNS薄膜和Cds的六边形紫立岩结构的Herzenebegrite正交晶体结构。为了验证实验设计的SNS薄膜作为HTL和Zn掺杂CDS ASETL的效率增强概念,使用了太阳能电池电容模拟(SCAPS)。在SCAPS中,对于电力转换效率的实验J-V的LHPSC(PCE)的第一个结果为19.7%,VOC为1.08 V,JSC为23.8 mA / cm2和FF为76%。 NextSNS作为HTL和Zn掺杂CDS作为ETL应用于SCAPS中以分析效果。优化LHPSC SLAPS的太阳能电池达到PCE 23.62%的值,VOC为1.10 V,JSC 25.53mA / cm2和FF 84.32%。

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