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首页> 外文期刊>Angewandte Chemie >Efficient Light-Harvesting Systems with Tunable Emission through Controlled Precipitation in Confined Nanospace
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Efficient Light-Harvesting Systems with Tunable Emission through Controlled Precipitation in Confined Nanospace

机译:高效的光收获系统,通过受控纳米空间中的受控降水发射

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摘要

Light harvesting is a key step in photosynthesis but creation of synthetic light-harvesting systems (LHSs) with high efficiencies has been challenging. When donor and acceptor dyes with aggregation-induced emission were trapped within the interior of cross-linked reverse vesicles, LHSs were obtained readily through spontaneous hydrophobically driven aggregation of the dyes in water. Aggregation in the confined nanospace was critical to the energy transfer and the light-harvesting efficiency. The efficiency of the excitation energy transfer (EET) reached 95% at a donor/acceptor ratio of 100:1 and the energy transfer was clearly visible even at a donor/acceptor ratio of 10000:1. Multicolor emission was achieved simply by tuning the donor/acceptor feed ratio in the preparation and the quantum yield of white light emission from the system was 0.38, the highest reported for organic materials in water to date.
机译:光收获是光合作用的关键步骤,但效率高的合成光收获系统(LHSS)一直在具有挑战性。 当具有聚集诱导的发射的供体和受体染料被捕获在交联的反向囊泡的内部时,通过水中染料的自发疏水驱动的聚集而容易地获得LHSS。 限制纳米周的聚集对能量转移和光收获效率至关重要。 激发能量转移(EET)的效率在100:1的供体/受体比下达到95%,并且即使在10000:1的供体/受体比下也清楚地看到能量转移。 仅通过调节制备中的供体/受体进料比来实现多色发射,并且来自系统的白光发射量为0.38,最高报道的有机材料在水中的有机物。

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