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Energy transfer in pendant perylene diimide copolymers

机译:侧链pendant二酰亚胺共聚物中的能量转移

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摘要

We report the synthesis, characterisation and polymerisation of two novel asymmetric perylene diimide acrylate monomers. The novel monomers form a sensitiser-acceptor pair capable of undergoing Forster resonance energy transfer, and were incorporated as copolymers with tert-butyl acrylate. The tert-butyl acrylate units act as spacers along the polymer chain allowing high concentrations of dye while mitigating aggregate quenching, leading to persistent fluorescence in the solid state at high concentrations of up to 0.3 M. Analysis of fluorescence kinetics showed efficient energy transfer between the optically dense sensitiser and the lower concentration acceptor luminophores within the polymer. This reduced reabsorption within the material demonstrates that the copolymer-scaffold energy transfer system has potential for use in luminescent solar concentrators.
机译:我们报告了两种新型不对称per二酰亚胺丙烯酸酯单体的合成,表征和聚合。所述新型单体形成能够进行Forster共振能量转移的敏化剂-受体对,并以与丙烯酸叔丁酯的共聚物形式引入。丙烯酸叔丁酯单元充当聚合物链上的间隔基,允许高浓度的染料同时减轻聚集体猝灭,从而在高达0.3 M的高浓度下产生固态的持久荧光。荧光动力学分析表明,光学致密的敏化剂和聚合物中较低浓度的受体发光体。材料内这种减少的再吸收证明了共聚物-支架能量转移系统具有用于发光太阳能聚光器的潜力。

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