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Graded band-gap engineering for increased efficiency in CZTS solar cells

机译:分级带隙工程可提高CZTS太阳能电池的效率

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摘要

In this paper, we propose a potential high efficiency Cu2ZnSn(S,Se)(4)/CdS (CZTS) solar cell design based on graded band-gap engineering that can offer the benefits of improved absorption behavior and reduced recombination effects. Moreover, a new hybrid approach based on analytical modeling and Particle Swarm Optimization (PSO) is proposed to determinate the optimal band-gap profile of the amended CZTS absorber layer to achieve further efficiency enhancement. It is found that the proposed design exhibits superior performance, where a high efficiency of 16.9% is recorded for the optimized solar cell with a relative improvement of 92%, compared with the reference cell efficiency of 8.8%. Likewise, the optimized CZTS solar cell with a graded band-gap enables achieving a higher open circuit voltage of 889 mV, a short-circuit current of 28.5 mA and a fill factor of 66%. Therefore, the optimized CZTS-based solar cell with graded-band gap paradigm pinpoints a new path toward recording high-efficiency thin-film solar cells through enhancing carrier collection and reducing the recombination rate. (C) 2018 Elsevier B.V. All rights reserved.
机译:在本文中,我们提出了一种基于梯度带隙工程的潜在高效Cu2ZnSn(S,Se)(4)/ CdS(CZTS)太阳能电池设计,该设计可提供改善的吸收性能和降低的复合效应的优点。此外,提出了一种基于分析模型和粒子群优化(PSO)的新混合方法,以确定修正的CZTS吸收层的最佳带隙分布,以进一步提高效率。发现所提出的设计表现出优异的性能,其中对于优化的太阳能电池记录了16.9%的高效率,相对于参考电池效率的8.8%,相对提高了92%。同样,具有分级带隙的优化CZTS太阳能电池可实现889 mV的更高开路电压,28.5 mA的短路电流和66%的填充系数。因此,具有梯度带隙范例的基于CZTS的优化太阳能电池通过增强载流子收集和降低复合率,为记录高效薄膜太阳能电池指明了一条新途径。 (C)2018 Elsevier B.V.保留所有权利。

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