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NaYF:Tm、Yb和Gd发光纳米棒/二氧化硅纳米球复合薄膜的制备及其在钙钛矿太阳能电池中的应用

Preparation of NaYF:Tm, Yb, and Gd Luminescent Nanorods/SiO Nanospheres Composite Thin Film and Its Application in Perovskite Solar Cells.

作者信息

Luo Qi, Yu Jian, Deng Xueshuang, Cao Ming, Ma Shifang, Hua Qiongxin, Xue Dan, An Fenghui

机构信息

College of Materials Science and Engineering, Jiujiang University, Jiujiang 332005, China.

Electronic Information and Electrical College of Engineering, ShangLuo University, Shangluo 726000, China.

出版信息

Materials (Basel). 2023 Oct 27;16(21):6917. doi: 10.3390/ma16216917.

Abstract

In this study, we aim to minimize light loss and achieve high power conversion efficiencies (PCE) in perovskite solar cells (PSCs) by employing a spectral conversion film component with antireflection properties. In our scheme, NaYF:Tm, Yb, and Gd luminescent nanorod/silica nanosphere-based thin films are applied on CHNHPbI PSCs to improve the device efficiency. The film was fabricated by spin coating an aged silica sol containing NaYF:Tm, Yb, and Gd luminescent nanorods. The size and the spectral conversion properties of the NaYF:Tm, Yb, and Gd luminescent nanorods were controlled by tuning the Gd ion concentration. The microstructure and the transmittance properties of the thin film were controlled by changing the concentration of NaYF:Tm, Yb, and Gd luminescent nanorod in silica sol. The thin films have excellent spectral conversion properties while exhibiting a maximum transmittance. The photovoltaic performance of PSCs with NaYF:Tm, Yb, and Gd luminescent nanorod/silica nanosphere-based thin films was systematically investigated. The light transmittance was optimized to 95.1% on a cleaned glass substrate, which resulted in an average increase of about 3.0% across the broadband range of 400-800 nm. The optimized films widen the spectrum of light absorbed by conventional PSC cells and reduce reflections across a broad range, enhancing the photovoltaic performance of PSCs. As a result, the PCE of the PSC increased from 14.51% for the reference device without a thin film to 15.67% for the PSC device with an optimized thin film. This study presents a comprehensive solution to the problem of Fresnel reflection and spectral response mismatch of the PSCs, which provides new ideas for the light management of PSCs.

摘要

在本研究中,我们旨在通过采用具有抗反射特性的光谱转换薄膜组件,使钙钛矿太阳能电池(PSC)中的光损失最小化,并实现高功率转换效率(PCE)。在我们的方案中,将基于NaYF:Tm、Yb和Gd发光纳米棒/二氧化硅纳米球的薄膜应用于CHNHPbI PSC,以提高器件效率。该薄膜通过旋涂含有NaYF:Tm、Yb和Gd发光纳米棒的老化硅溶胶制成。通过调节Gd离子浓度来控制NaYF:Tm、Yb和Gd发光纳米棒的尺寸和光谱转换特性。通过改变硅溶胶中NaYF:Tm、Yb和Gd发光纳米棒的浓度来控制薄膜的微观结构和透光特性。这些薄膜具有优异的光谱转换特性,同时展现出最大透光率。系统研究了具有基于NaYF:Tm、Yb和Gd发光纳米棒/二氧化硅纳米球薄膜的PSC的光伏性能。在清洁的玻璃基板上,光透过率优化至95.1%,这使得在400 - 800 nm的宽带范围内平均提高了约3.0%。优化后的薄膜拓宽了传统PSC电池吸收的光谱范围,并减少了宽范围内的反射,增强了PSC的光伏性能。结果,PSC的PCE从无薄膜的参考器件的14.51%提高到了具有优化薄膜的PSC器件的15.67%。本研究为PSC的菲涅尔反射和光谱响应失配问题提供了全面的解决方案,为PSC的光管理提供了新思路。

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