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基于均匀化理论的新型半解析光电模型用于实际的等离子体聚合物太阳能电池。

Novel semi-analytical optoelectronic modeling based on homogenization theory for realistic plasmonic polymer solar cells.

作者信息

Arefinia Zahra, Samajdar Dip Prakash

机构信息

Department of Photonics, Faculty of Physics, University of Tabriz, 51666-14766, Tabriz, Iran.

Department of Electronics and Communication Engineering, PDPM Indian Institute of Information Technology, Design and Manufacturing, Jabalpur, Madhya Pradesh, 482005, India.

出版信息

Sci Rep. 2021 Feb 5;11(1):3261. doi: 10.1038/s41598-021-82525-5.

Abstract

Numerical-based simulations of plasmonic polymer solar cells (PSCs) incorporating a disordered array of non-uniform sized plasmonic nanoparticles (NPs) impose a prohibitively long-time and complex computational demand. To surmount this limitation, we present a novel semi-analytical modeling, which dramatically reduces computational time and resource consumption and yet is acceptably accurate. For this purpose, the optical modeling of active layer-incorporated plasmonic metal NPs, which is described by a homogenization theory based on a modified Maxwell-Garnett-Mie theory, is inputted in the electrical modeling based on the coupled equations of Poisson, continuity, and drift-diffusion. Besides, our modeling considers the effects of absorption in the non-active layers, interference induced by electrodes, and scattered light escaping from the PSC. The modeling results satisfactorily reproduce a series of experimental data for photovoltaic parameters of plasmonic PSCs, demonstrating the validity of our modeling approach. According to this, we implement the semi-analytical modeling to propose a new high-efficiency plasmonic PSC based on the PM6:Y6 PSC, having the highest reported power conversion efficiency (PCE) to date. The results show that the incorporation of plasmonic NPs into PM6:Y6 active layer leads to the PCE over 18%.

摘要

包含尺寸不均匀的无序排列等离子体纳米颗粒(NP)的等离子体聚合物太阳能电池(PSC)的基于数值的模拟需要极长的时间且计算需求复杂。为克服这一限制,我们提出了一种新颖的半解析模型,该模型显著减少了计算时间和资源消耗,同时具有可接受的准确性。为此,基于修正的麦克斯韦 - 加尼特 - 米氏理论的均匀化理论所描述的、包含有源层的等离子体金属NP的光学模型,被输入到基于泊松、连续性和漂移 - 扩散耦合方程的电学模型中。此外,我们的模型考虑了非有源层中的吸收效应、电极引起的干涉以及从PSC逸出的散射光。建模结果令人满意地再现了一系列等离子体PSC光伏参数的实验数据,证明了我们建模方法的有效性。据此,我们实施半解析模型以基于PM6:Y6 PSC提出一种新型高效等离子体PSC,其具有迄今为止报道的最高功率转换效率(PCE)。结果表明,将等离子体NP掺入PM6:Y6有源层可使PCE超过18%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05dc/7864904/36189a32fa65/41598_2021_82525_Fig1_HTML.jpg

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