材料科学
发光
钙钛矿(结构)
铅(地质)
衍生工具(金融)
选矿厂
荧光粉
光电子学
光学
化学工程
物理
地质学
工程类
金融经济学
地貌学
经济
作者
Huanxin Yang,Haolin Lu,Xuejiao Wang,Wenda Sun,Yu‐Jing Yang,Wei Xiong,Guankui Long,Jialiang Xu,Xiaodan Zhang,Mingjian Yuan,Xiyan Li
标识
DOI:10.1038/s41377-025-01973-0
摘要
Abstract Luminescent solar concentrators (LSCs) offer a sustainable approach to power generation using fluorescent glasses, yet their green industrialization is impeded by the limited production scale and non-recyclability of embedded nanocrystals. Here, we introduce a lead-free perovskite derivative ETP 2 SbCl 5 (ETP = (C 6 H 5 ) 3 PC 2 H 5 ) with a reversible transition between powder and glass states. Through molecular dynamics and density functional theory, we elucidate the possible structural distortions of [SbCl 5 ] pyramids and their impact on luminescence. The fabricated LSCs, utilizing such fluorescent glasses with an efficient absorption for <420 nm, achieve the highest power conversion and optical efficiencies of ~5.56% and ~32.5%, respectively. In addition to self-healing by reheating at ~200 °C, impressively, it could be mass recycled to phosphor by ethanol or heating treatments, which still maintains nearly initial fluorescent performance and could be repurposed like freshly synthesized samples. This work presents a paradigm for the sustainable use of fluorescent materials and offers a reliable path toward low-carbon globalization.
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