Jin Lei, Hamzehpoor Ehsan, Selopal Gurpreet Singh, Liu Jiabin, Kumar Pawan, Benetti Daniele, Tong Xin, Perepichka Dmytro F, Wang Zhiming M, Rosei Federico
Institute of Fundamental and Frontier Sciences, University of Electronic Science and Technology of China, Chengdu, 610054, P. R. China.
Centre for Energy, Materials and Télécommunications, Institut national de la recherche scientifique, 1650 Boul. Lionel-Boulet, Varennes, Quebec, J3X1P7, Canada.
Small Methods. 2025 Feb;9(2):e2301695. doi: 10.1002/smtd.202301695. Epub 2024 Mar 28.
Quantum dots (QDs) are promising building blocks for luminescent solar concentrators (LSCs), yet most QD-based LSCs suffer from toxic metal composition and color tinting. UV-selective harvesting QDs can enable visible transparency, but their development is restricted by large reabsorption losses and low photoluminescence quantum yield (PLQY). The developed here Ag, Mn: ZnInS/ZnS QDs show a high PLQY of 53% due to the passivating effect of ZnS shell. These QDs selectively absorb UV light and emit orange-red light with a large Stokes shift of 180 nm. A LSC of 5 × 5 × 0.2 cm, fabricated using a poly(lauryl methacrylate) (PLMA) as a matrix, maintains 87% of integrated PL after 7 h of UV exposure. The QD-PLMA achieved 90.7% average visible transparency (AVT) and a color rendering index (CRI) of 95.8, which is close to plain PLMA (AVT = 90.8%; CRI = 99.5), yielding excellent visible light transparency. Incorporating Si-PVs at LSC edges, the Ag, Mn: ZIS/ZnS QD-LSC achieved an optical efficiency of 1.42%, ranking competitively among high-performing UV-harvesting LSCs.
量子点(QDs)是用于发光太阳能聚光器(LSCs)的有前景的构建块,但大多数基于量子点的发光太阳能聚光器存在有毒金属成分和颜色着色问题。紫外光选择性捕获量子点可以实现可见光透明性,但其发展受到大的重吸收损失和低光致发光量子产率(PLQY)的限制。此处开发的Ag,Mn:ZnInS/ZnS量子点由于ZnS壳层的钝化作用而显示出53%的高光致发光量子产率。这些量子点选择性吸收紫外光并发射具有180nm大斯托克斯位移的橙红色光。使用聚(月桂基甲基丙烯酸酯)(PLMA)作为基质制造的5×5×0.2cm的发光太阳能聚光器在紫外光照射7小时后保持87%的积分光致发光。量子点-聚(月桂基甲基丙烯酸酯)实现了90.7%的平均可见光透明度(AVT)和95.8的显色指数(CRI),这与纯聚(月桂基甲基丙烯酸酯)相近(AVT = 90.8%;CRI = 99.5),产生了优异的可见光透明度。在发光太阳能聚光器边缘并入硅基光伏电池,Ag,Mn:ZIS/ZnS量子点发光太阳能聚光器实现了1.42%的光学效率,在高性能紫外光捕获发光太阳能聚光器中具有竞争力。