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Eco‐Friendly Colloidal Quantum Dot‐Based Luminescent Solar Concentrators

机译:基于生态胶体量子点的发光太阳能聚光器

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摘要

Luminescent solar concentrators (LSCs) have attracted significant attention as promising solar energy conversion devices for building integrated photovoltaic (PV) systems due to their simple architecture and cost‐effective fabrication. Conventional LSCs are generally comprised of an optical waveguide slab with embedded emissive species and coupled PV cells. Colloidal semiconductor quantum dots (QDs) have been demonstrated as efficient emissive species for high‐performance LSCs because of their outstanding optical properties including tunable absorption and emission spectra covering the ultraviolet/visible to near‐infrared region, high photoluminescence quantum yield, large absorption cross sections, and considerable photostability. However, current commonly used QDs for high‐performance LSCs consist of highly toxic heavy metals (i.e., cadmium and lead), which are fatal to human health and the environment. In this regard, it is highly desired that heavy metal‐free and environmentally friendly QD‐based LSCs are comprehensively studied. Here, notable advances and developments of LSCs based on unary, binary, and ternary eco‐friendly QDs are presented. The synthetic approaches, optical properties of these eco‐friendly QDs, and consequent device performance of QD‐based LSCs are discussed in detail. A brief outlook pointing out the existing challenges and prospective developments of eco‐friendly QD‐based LSCs is provided, offering guidelines for future device optimizations and commercialization.
机译:发光太阳能聚光器(LSC)由于其简单的结构和具有成本效益的制造方法而成为有前途的用于建筑集成光伏(PV)系统的太阳能转换设备,引起了广泛的关注。常规的LSC通常由具有嵌入式发射物质和耦合PV电池的光波导平板组成。胶体半导体量子点(QD)已被证明是高性能LSC的有效发射物种,因为它们出色的光学特性包括覆盖紫外/可见到近红外区域的可调吸收和发射光谱,高光致发光量子产率,大吸收交叉截面,并具有相当的光稳定性。但是,当前用于高性能LSC的常用QD由剧毒的重金属(例如镉和铅)组成,这些金属对人体健康和环境均具有致命危害。在这方面,非常需要对不含重金属和环保的基于QD的LSC进行全面研究。在此,将介绍基于一元,二元和三元生态友好QD的LSC的显着进步和发展。详细讨论了这些环保QD的合成方法,光学特性以及基于QD的LSC的设备性能。本文简要介绍了基于QD的生态友好型LSC的现有挑战和未来发展,为将来的设备优化和商业化提供了指导。

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