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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Carbazole-functionalized polyphenylene-decorated solid state emissive D-A-D molecules: reduced donor-acceptor interaction and enhanced emission in the solid state
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Carbazole-functionalized polyphenylene-decorated solid state emissive D-A-D molecules: reduced donor-acceptor interaction and enhanced emission in the solid state

机译:咔唑官能化的聚亚苯基修饰的固态发射D-A-D分子:减少的供体-受体相互作用并增强固态发射

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摘要

A new series of D-A-D molecules (1-3) with carbazole as a donor and 2,5-diaryl-1,3,4-oxadiazole, dibenzothiophene-S, S-dioxide and benzo[1,2,5]thiadiazole as acceptors have been synthesized. Polyphenylene dendrons have also been incorporated to prevent the face to face p-p stacking in aggregates. Unlike traditional D-A systems, which show ACQ problems and large red shifts in the solid state, these derivatives (1-3) exhibit good solid state luminescence behavior without undergoing a red shift or fluorescence quenching. The present results indicate that just the combination of a donor-acceptor system with bulkier dendrons is not enough to generate efficient solid state emissions but the prevention of co-facial interaction between donors and acceptors in aggregates is more important. In the case of derivative 3, restriction of complete molecular planarization and steric hindrance near the acceptor can effectively prevent intermolecular donor-acceptor interactions, thus leading to enhanced emission in aggregates. While in the case of derivative 1, a sterically unhindered acceptor is easily approached by a donor due to close molecular packing in aggregates forming weakly luminescent species.
机译:一系列新的DAD分子(1-3),以咔唑为供体,2,5-二芳基-1,3,4-恶二唑,二苯并噻吩-S,S-二氧化物和苯并[1,2,5]噻二唑为受体已经合成。还引入了聚亚苯基树枝状分子以防止聚集体中面对面的p-p堆积。与传统的D-A系统(显示ACQ问题和固态中的大红移)不同,这些衍生物(1-3)表现出良好的固态发光性能,而没有发生红移或荧光猝灭。目前的结果表明,仅将供体-受体体系与更大的树枝状分子结合起来不足以产生有效的固态发射,但是更重要的是要防止聚集体中供体和受体之间的界面相互作用。在衍生物3的情况下,完全分子平面化和受体附近的位阻的限制可以有效地防止分子间供体-受体相互作用,从而导致聚集体的发射增强。在衍生物1的情况下,由于分子紧密堆积在形成弱发光物质的聚集体中,供体容易接近空间不受阻的受体。

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