Polydispersed Metal Nanoparticles at the Interface for Improved Optoelectronic Properties in Perovskite Photovoltaics

A. Kesavan, A. D. Rao, Praveen C Ramamurthy
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引用次数: 1

Abstract

Enhancing the light photons which are responsible for the generation of the exciton in the photoactive layer is one of the primary ways to increase the net power conversion efficiency of solar cell. Using plasmonic metal nanoparticle is one of the well-known method to improve the solar cell performance. In this work, poly-dispersed aluminium nanoparticles (AlNPs) were embedded at the PC61BM/Al interface to investigate the effect of it on solar cell performance. It is observed that device with AlNPs at the PC61BM/Al interface showed significant enhancement in optical absorption and as a result improved JSC. It is observed that Al nanoparticles at cathode interface aids in light trapping and also reduction in series resistance. These coupled effects of optical and electrical enhancement tend to improve power conversion efficiency in the device. From this study, it is noted that addition of AlNPs modifies deep trap state distribution in the active matrix. Further, this study shows that AlNPs incorporation with ETL improves the device power conversion efficiency (PCE) mainly through the optical enhancement.
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界面上的多分散金属纳米颗粒改善钙钛矿光伏电池的光电性能
增强光活性层中产生激子的光子是提高太阳能电池净功率转换效率的主要途径之一。利用等离子体金属纳米粒子是提高太阳能电池性能的常用方法之一。本研究将多分散铝纳米颗粒(AlNPs)嵌入到PC61BM/Al界面,研究其对太阳能电池性能的影响。观察到在PC61BM/Al界面处添加AlNPs的器件,其光吸收明显增强,从而改善了JSC。结果表明,阴极界面处的Al纳米粒子有利于光捕获和串联电阻的降低。这些光电增强的耦合效应倾向于提高器件的功率转换效率。从本研究中可以看出,AlNPs的加入改变了有源矩阵中深阱态的分布。此外,本研究表明,AlNPs与ETL的结合主要通过光增强来提高器件的功率转换效率(PCE)。
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