等离子体金属纳米粒子嵌套二维/三维混合锡钙钛矿太阳能电池的研究

Atanu Purkayastha, Manoranjan Minz, R. Sonkar, A. T. Mallajosyula
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引用次数: 0

摘要

在这项工作中,利用表面等离子体效应,利用各种金属纳米颗粒来提高单层二维/三维混合维混合锡钙钛矿太阳能电池的效率。本研究使用了Silvaco TCAD和Lumerical FDTD软件。作为第一步,在没有任何纳米颗粒存在的情况下,钙钛矿层的厚度已经通过实验确定的光学常数进行了优化。结果表明,在180 nm处效率最高,为14.13%。在此厚度下,金属纳米颗粒在钙钛矿层中的大小和位置发生了变化。在电子传递层界面处放置半径为15 nm的球形银纳米粒子,在450 ~ 600 nm和800 nm以上的波长范围内,银纳米粒子的光吸收显著增强。因此,最大可能光电流密度提高了7%,达到29.64 $\mathbf{mA}.\mathbf{cm}^{-2}$。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of lead-free 2D/3D mixed-dimensional tin perovskite solar cell embedded with plasmonic metal nanoparticles
In this work, various metal nanoparticles have been used to improve the efficiency of a single layer 2D/3D mixed-dimensional hybrid tin perovskite solar cell, exploiting the surface plasmon effect. Silvaco TCAD and Lumerical FDTD software have been used for this study. As a first step, the thickness of perovskite layer, without the presence of any nanoparticles, has been optimized using experimentally determined optical constants. It has been found that the best possible efficiency of 14.13% is obtained at 180 nm. At this thickness, the size and position of metal nanoparticles in the perovskite layer have been varied. With spherical silver nanoparticles of 15 nm radius placed at the electron transport layer interface, the light absorption has been significantly enhanced for wavelengths between 450–600 nm and above 800 nm. Owing to this, the maximum possible photocurrent density improved by 7% to 29.64 $\mathbf{mA}.\mathbf{cm}^{-2}$.
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