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首页> 外文期刊>Materials Chemistry Frontiers >Linker dependent symmetry breaking charge separation in 9,10-bis(phenylethynyl)anthracene dimers
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Linker dependent symmetry breaking charge separation in 9,10-bis(phenylethynyl)anthracene dimers

机译:链接器依赖对称性破坏电荷分离在9日10-bis (phenylethynyl)蒽二聚体

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摘要

To develop new efficient symmetry breaking charge separation (SB-CS) materials with fast rate and slow recombination in nonpolar or weakly polar solvents is urgent for its better practical application, yet it remains a great challenge. Herein, we synthesized three 9,10-bis(phenylethynyl)anthracene dimers linked by a phenylene spacer in an ortho- (o-dimer), meta- (m-dimer), and para- arrangement (p-dimer), in which the electronic coupling between the two BPEA units could be tuned by changing their relative orientation. Their SB-CS properties were investigated comparatively using steady-state/transient absorption and fluorescence spectroscopy. The result shows that fast SB-CS could be conducted in o-dimer even in weakly polar solvents. However, the slow SB-CS process is only carried out in polar solvents for the m-dimer. Furthermore, the SB-CS state could be stable for several nanoseconds for o-dimer and m-dimer. In the same solvent, p-dimer has the fastest SB-CS rate compared to o-dimer and m-dimer, but the recombination rate is also the fastest. Different SB-CS dynamics in these three dimers should be caused by their different electronic coupling strengths induced by various molecular orientations. The fast SB-CS and slow recombination of o-dimer in weakly polar solvents make it a highly promising material for application in optoelectronic technologies. The SB-CS process cannot proceed in polystyrene film for these three dimers, suggesting that molecular rotation plays an important role in the SB-CS process except the electronic coupling. This work provides some insights into developing novel SB-CS materials for practical applications.
机译:开发新的高效的对称性破坏电荷分离(SB-CS)材料和快速缓慢的重组在非极性或弱极性的迫在眉睫的溶剂对其更好的实践应用程序,但它仍然是一个巨大的挑战。在此,我们合成了三个9日10-bis (phenylethynyl)蒽二聚体相连由苯间隔在一个正的——(o-dimer),(元)- m-dimer, para -安排(p-dimer),两者之间的电子耦合BPEA单位可以通过改变他们的调优相对取向。调查比较使用稳态/瞬态吸收和荧光光谱。快SB-CS o-dimer即使在进行弱极性溶剂。过程只在极性溶剂中进行m-dimer。是稳定的几个纳秒o-dimer和m-dimer。相比o-dimer SB-CS最快的速度,m-dimer,但重组率最快。二聚体应该由不同造成的电子耦合的优点不同引起的分子取向。复合的o-dimer弱极性溶剂使它成为一个非常有前途的材料在光电子技术中的应用。在聚苯乙烯膜SB-CS过程不能进行这三个二聚体,这表明分子旋转SB-CS起着重要的作用除了电子耦合过程。提供了一些见解发展小说SB-CS材料实际应用。

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