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首页> 外文期刊>Dyes and Pigments >Benzo[1,2-d:4,5-d ']bisthiazole fluorophores for luminescent solar concentrators: synthesis, optical properties and effect of the polymer matrix on the device performances
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Benzo[1,2-d:4,5-d ']bisthiazole fluorophores for luminescent solar concentrators: synthesis, optical properties and effect of the polymer matrix on the device performances

机译:Benzo [1,2-D:4,5-D']荧光太阳能聚光器的BISTOZOLE荧光团:合成,光学性质和聚合物基质对器件性能的影响

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Three new fluorophores (BBT2-4) with a D-A-D structure, characterised by the common benzo[1,2-d:4,5-d'] bisthiazole (BBT) as acceptor core (A) and different donor groups (D), were designed and synthesised for use in thin-film luminescent solar concentrators (LSC). The optical and spectroscopic properties of the new dyes were analysed both in solution (toluene) and in polymeric films, using static and time-resolved techniques. All the prepared molecules showed intense emissions between 460 and 550 nm with large Stokes shift (>50 nm), moderate-to-good fluorescence quantum yields (Phi(f)) both in toluene solution (18-73%) and in poly(methyl methacrylate) (PMMA) films (10-52%) and good optical efficiencies (5.8-7.5%) as LSC. Transient absorption spectroscopy (TAS) studies highlighted that higher Phi(f) were related to long excited-state lifetimes and that such properties were critically dependent on the polarity of the surrounding environment. Notably, homogeneous BBT4 dispersions into the less polar poly(benzyl methacrylate) (PBzMA) and poly(cyclohexyl methacrylate) (PCMA) polymeric matrices showed higher Phi(f) (52.6% and 65.6%, respectively) than those gathered from PMMA films. Accordingly, BBT4/PCMA films revealed significant optical efficiency of 9.0% as LSC, which was comparable to that provided by the state-of-art fluorophore Lumogen Red 305 (10.1%).
机译:设计并合成了三种具有D-a-D结构的新型荧光团(BBT2-4),其特征是常见的苯并[1,2-D:4,5-D']双噻唑(BBT)作为受体核(a)和不同的施主基团(D),用于薄膜发光太阳能聚光器(LSC)。用静态和时间分辨技术分析了新染料在溶液(甲苯)和聚合物薄膜中的光学和光谱性质。在甲苯溶液(18-73%)和聚甲基丙烯酸甲酯(PMMA)薄膜(10-52%)中,所有制备的分子都显示出460-550nm之间的强发射,斯托克斯位移大(>50nm),中等至良好的荧光量子产率(Phi(f)),以及作为LSC的良好光学效率(5.8-7.5%)。瞬态吸收光谱(TAS)研究强调,较高的Phi(f)与较长的激发态寿命有关,并且这种性质严重依赖于周围环境的极性。值得注意的是,BBT4在极性较低的聚甲基丙烯酸苄酯(PBzMA)和聚甲基丙烯酸环己酯(PCMA)聚合物基体中的均匀分散显示出比从PMMA薄膜中收集到的更高的Phi(f)(分别为52.6%和65.6%)。因此,BBT4/PCMA薄膜显示出作为LSC的9.0%的显著光学效率,这与最先进的荧光团Lumogen Red 305(10.1%)提供的光学效率相当。

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