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首页> 外文期刊>Angewandte Chemie >Excited-State Dynamic Planarization of Cyclic Oligothiophenes in the Vicinity of a Ring-to-Linear Excitonic Behavioral Turning Point
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Excited-State Dynamic Planarization of Cyclic Oligothiophenes in the Vicinity of a Ring-to-Linear Excitonic Behavioral Turning Point

机译:环状到线性激发行为行为转折点附近的环状寡噻吩的激发态动态平面化

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Excited-state dynamic planarization processes play a crucial role in determining exciton size in cyclic systems, as reported for p-conjugated linear oligomers. Herein, we report time-resolved fluorescence spectra and molecular dynamics simulations of p-conjugated cyclic oligothiophenes in which the number of subunits was chosen to show the size-dependent dynamic planarization in the vicinity of a ring-to-linear behavioral turning point. Analyses on the evolution of the total fluorescence intensity and the ratio between 0-1 to 0-0 vibronic bands suggest that excitons formed in a cyclic oligothiophene composed of six subunits fully delocalize over the cyclic carbon backbone, whereas those formed in larger systems fail to achieve complete delocalization. With the aid of molecular dynamics simulations, it is shown that distorted structures unfavorable for efficient exciton delocalization are more easily populated as the size of the cyclic system increases.
机译:如对p共轭线性低聚物的报道,激发态动态平面化过程在确定循环系统中激子大小方面起着至关重要的作用。在这里,我们报告时间共轭的低聚噻吩的p-共轭环状寡聚噻吩的时间分辨荧光光谱和分子动力学模拟,其中选择了亚单位的数目以显示在环-线性行为转折点附近的尺寸依赖性动态平面化。对总荧光强度和0-1至0-0振动带之间的比率进行的分析表明,在由六个亚基组成的环状低聚噻吩中形成的激子在环碳主链上完全离域,而在较大系统中形成的激子则不能实现完全的本地化。借助分子动力学模拟,结果表明,随着循环系统尺寸的增加,更不容易出现对有效激子离域不利的扭曲结构。

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