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Luminescent Downshifting by Photo-Induced Sol-Gel Hybrid Coatings: Accessing Multifunctionality on Flexible Organic Photovoltaics via Ambient Temperature Material Processing

机译:光诱导的溶胶-凝胶混合涂层的发光降档:通过环境温度材料处理获得柔性有机光伏上的多功能

摘要

A novel high-durability multifunctional organic-inorganic hybrid coating material is presented in this work as luminescent down-shifting (LDS) host matrix system for flexible organic photovoltaic (OPV) devices. Such new LDS coating is obtained by incorporating a convenient fluorescent organic dye in an appropriately functionalized fluoropolymeric resin that can be readily crosslinked by means of a dual-cure mechanism with a single-step ambient-temperature photo-induced sol-gel process. Due to its peculiar characteristics, the newly proposed system may be readily implemented in heat-sensitive flexible devices. By carefully tuning the amount of organic fluorophore in the hybrid coating material, a maximum increase in power conversion efficiency exceeding 4% is achieved on devices incorporating the new LDS layer with respect to control systems. This represents the highest efficiency enhancement reported to date on flexible OPVs by means of a polymer-based LDS layer. In addition, long-term accelerated weathering tests (>550 h) highlight the excellent stability of LDS-coated OPV devices, which can retain 80% of their initial performance, as opposed to the dramatic efficiency decay experienced by control uncoated devices. The approach presented here opens the way to the straightforward incorporation of versatile multifunctional light-managing layers on flexible OPV systems for improved device efficiency and lifetime.
机译:在这项工作中提出了一种新型的高耐久性多功能有机-无机杂化涂料材料,作为柔性有机光伏(OPV)器件的发光下移(LDS)主体矩阵系统。这种新的LDS涂层是通过在适当功能化的含氟聚合物树脂中掺入方便的荧光有机染料而获得的,该含氟树脂可以通过双固化机制与单步环境光诱导的溶胶-凝胶工艺轻松地交联。由于其独特的特性,新提出的系统可以很容易地在热敏柔性设备中实现。通过仔细调节混合涂层材料中有机荧光团的量,相对于控制系统,在装有新的LDS层的设备上,功率转换效率的最大增加超过4%。这代表了迄今为止通过基于聚合物的LDS层在柔性OPV上获得的最高效率提升。此外,长期加速老化测试(> 550小时)凸显了采用LDS涂层的OPV器件的出色稳定性,与未经涂层的受控器件所经历的效率急剧下降相比,它可以保留其初始性能的80%。此处介绍的方法为在灵活的OPV系统上直接集成通用多功能光管理层开辟了道路,从而提高了设备​​效率和使用寿命。

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