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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Energy Migration in Organic Solar Concentrators with a Molecularly Insulated Perylene Diimide
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Energy Migration in Organic Solar Concentrators with a Molecularly Insulated Perylene Diimide

机译:带有分子绝缘的Per二酰亚胺的有机太阳能聚光器中的能量迁移

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摘要

Maintaining high incident light absorption while minimizing luminescence reabsorption is a key challenge for organic luminescent solar concentrators (LSCs). Energy migration and trapping using light-harvesting donors and a low-energy highly emitting acceptor is one strategy to reduce the reabsorption issue. However, concentration quenching and the potential formation of quenching aggregates is a limiting factor in realizing efficient devices. We describe the synthesis of a novel molecularly insulated perylene diimide that can resist luminescence quenching at concentrations in excess of SO mM. Photophysical measurements show the insulated perylene diimide has an excitation energy migration diffusion length of 230 10 A at 60 mM in poly(methyl methacrylate). LSC devices using a mixture of the insulated perylene diimide light absorber and perylene red (LR305) as the low-energy trap emitter exhibit reduced reabsorption and a better current output than LR305 only devices. The results demonstrate that appropriately designed organic molecule dyes can potentially meet the stringent requirements required for efficient LSCs.
机译:对于有机发光太阳能聚光器(LSC),维持高入射光吸收同时最小化发光再吸收是一项关键挑战。使用光捕获供体和低能量高发射受体的能量迁移和俘获是减少重吸收问题的一种策略。然而,浓度猝灭和猝灭聚集体的潜在形成是实现有效装置的限制因素。我们描述了一种新型的分子绝缘的per二酰亚胺的合成,该分子可以在超过SO mM的浓度下抵抗发光猝灭。光物理测量表明,绝缘的per二酰亚胺在聚甲基丙烯酸甲酯中在60 mM时的激发能迁移扩散长度为230 10A。与仅使用LR305的器件相比,使用绝缘的per二酰亚胺光吸收剂和per红色(LR305)的混合物作为低能阱发射器的LSC器件显示出减少的重吸收和更好的电流输出。结果表明,适当设计的有机分子染料可以潜在地满足有效LSC的严格要求。

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