Optical, thermal, and electrical analysis of perovskite solar cell with grated cds and embedded plasmonic Au nanoparticles

IF 7 3区 材料科学 Q1 ENERGY & FUELS Journal of Physics-Energy Pub Date : 2024-02-14 DOI:10.1088/2515-7655/ad249b
Ohidul Islam, M Hussayeen Khan Anik, Sakib Mahmud, Joyprokash Debnath, Ahsan Habib, Sharnali Islam
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Abstract

We propose a novel approach to enhance the performance of perovskite solar cells (PSCs) by incorporating grated Cadmium Sulfide (CdS) and plasmonic gold nanoparticles (Au NPs) into the absorber layer. The CdS grating acts as the electron transport layer and penetrates into the perovskite absorber layer, increasing the absorption of the active layer and reducing the electron–hole recombination rate. The plasmonic Au NPs enhance the absorption in the infrared region by scattering and trapping the incident light. We perform a coupled optical and electrical study that shows a significant improvement in the short circuit current density ( JSC ) and power conversion efficiency (PCE) of the PSC after introducing the CdS grating and plasmonic Au NPs. Specifically, we observe a 48% increase in average optical absorption from 800 nm to 1400 nm and a 7.42 mA cm−2 increase in J SC . We also find that the PCE of the PSC is increased by 7.91% when comparing the planar reference structure (without the CdS grating and the plasmonic Au NP). However, metal nanoparticles introduce ohmic losses and temperature rise in the solar cell. We analyze the non-radiative heat profile, electric field distribution, and temperature distribution across the PSC. We observe a temperature increase of approximately 14 K above the ambient temperature for the grated CdS layer with incorporated Au NPs, which is comparable to the temperature increase observed in the planar reference structure. Our results have the potential to pave the way for the development of highly efficient and stable PSCs in the future.
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带有栅格 cds 和嵌入式等离子金纳米粒子的过氧化物太阳能电池的光学、热学和电学分析
我们提出了一种新方法,通过在吸收层中加入带光栅的硫化镉(CdS)和等离子体金纳米粒子(Au NPs)来提高过氧化物太阳能电池(PSCs)的性能。CdS 光栅充当电子传输层,并渗透到过氧化物吸收层中,从而增加了有源层的吸收率,降低了电子-空穴重组率。质子金氧化物通过散射和捕获入射光增强了红外区域的吸收。我们进行了一项光电耦合研究,结果表明在引入 CdS 光栅和等离子金 NPs 后,PSC 的短路电流密度(JSC)和功率转换效率(PCE)有了显著提高。具体来说,我们观察到从 800 纳米到 1400 纳米的平均光吸收增加了 48%,J SC 增加了 7.42 mA cm-2。我们还发现,与平面参考结构(无 CdS 光栅和等离子金 NP)相比,PSC 的 PCE 增加了 7.91%。然而,金属纳米粒子会在太阳能电池中产生欧姆损耗和温升。我们分析了整个 PSC 的非辐射热曲线、电场分布和温度分布。我们观察到,含有金纳米粒子的栅格状 CdS 层的温度比环境温度高出约 14 K,这与在平面参考结构中观察到的温度升高相当。我们的研究结果有望为未来开发高效稳定的 PSC 铺平道路。
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来源期刊
CiteScore
10.90
自引率
1.40%
发文量
58
期刊介绍: The Journal of Physics-Energy is an interdisciplinary and fully open-access publication dedicated to setting the agenda for the identification and dissemination of the most exciting and significant advancements in all realms of energy-related research. Committed to the principles of open science, JPhys Energy is designed to maximize the exchange of knowledge between both established and emerging communities, thereby fostering a collaborative and inclusive environment for the advancement of energy research.
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