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基于等离子体纳米颗粒的碲化镉太阳能电池对太阳能的超吸收

Super absorption of solar energy using a plasmonic nanoparticle based CdTe solar cell.

作者信息

Rehman Qandeel, Khan Aimal Daud, Khan Adnan Daud, Noman Muhammad, Ali Haider, Rauf Abdul, Ahmad Muhammad Shakeel

机构信息

Center for Advanced Studies in Energy, University of Engineering & Technology Peshawar 25000 Pakistan

College of Energy, Soochow Institute for Energy and Materials InnovationS (SIEMIS), Soochow University Suzhou 215006 China.

出版信息

RSC Adv. 2019 Oct 23;9(59):34207-34213. doi: 10.1039/c9ra07782k.

Abstract

Improving the photon absorption in thin-film solar cells with plasmonic nanoparticles is essential for the realization of extremely efficient cells with substantial cost reduction. Here, a comprehensive study of solar energy enhancement in a cadmium telluride (CdTe) thin-film solar cell based on the simple design of a square array of plasmonic titanium nanoparticles, has been reported. The excitation of localized plasmons in the metallic nanostructures together with the antireflection coating (ARC) significantly enhances the absorption of photons in the active CdTe layer. The proposed structure attained super absorption with a mean absorbance of more than 97.27% covering a wide range from visible to near-infrared (, from 300 nm to 1200 nm), presenting a 90% absorption bandwidth over 900 nm, and the peak absorption is up to 99.9%. For qualitative analysis, the photocurrent density is also estimated for AM 1.5 solar illumination (global tilt), whose value reaches 40.36 mA cm, indicating the highest value reported to date. The impact of nanoparticle dimensions, various metal materials, shapes, and random arrangement of nanoparticles on optical absorption are discussed in detail. Moreover, the angle insensitivity is essentially validated by examining the absorption performance with oblique incidences and it is found that the solar cell keeps high absorption efficiency even when the incidence angle is greater than 0°. Therefore, these findings suggest that the proposed broadband structure has good prospect in attaining high power conversion efficiency while reducing the device cost.

摘要

利用等离子体纳米颗粒提高薄膜太阳能电池中的光子吸收对于实现成本大幅降低的极高效率电池至关重要。在此,已报道了一项基于简单的等离子体钛纳米颗粒方形阵列设计的碲化镉(CdTe)薄膜太阳能电池中太阳能增强的综合研究。金属纳米结构中局域等离子体的激发与抗反射涂层(ARC)一起显著增强了活性CdTe层中光子的吸收。所提出的结构实现了超吸收,平均吸收率超过97.27%,覆盖从可见光到近红外的宽范围(从300纳米到1200纳米),呈现出超过900纳米的90%吸收带宽,且峰值吸收高达99.9%。为了进行定性分析,还估计了AM 1.5太阳光照(全球倾斜)下的光电流密度,其值达到40.36 mA/cm²,表明这是迄今为止报道的最高值。详细讨论了纳米颗粒尺寸、各种金属材料、形状以及纳米颗粒的随机排列对光吸收的影响。此外,通过检查斜入射时的吸收性能基本验证了角度不敏感性,并且发现即使入射角大于0°,太阳能电池仍保持高吸收效率。因此,这些发现表明所提出的宽带结构在实现高功率转换效率同时降低器件成本方面具有良好前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fca/9073893/20d86361fb7e/c9ra07782k-f1.jpg

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