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首页> 外文期刊>The Journal of Chemical Physics >Perspective: Optical spectroscopy in pi-conjugated polymers and how it can be used to determine multiscale polymer structures
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Perspective: Optical spectroscopy in pi-conjugated polymers and how it can be used to determine multiscale polymer structures

机译:透视:PI-缀合聚合物中的光学光谱和其如何用于确定多尺度聚合物结构

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摘要

Exciton delocalization in conjugated polymer systems is determined by polymer conformations and packing. Since exciton delocalization determines the photoluminescent vibronic progression, optical spectroscopy provides an indirect link to polymer multiscale structures. This perspective describes our current theoretical understanding of how exciton delocalization in pi-conjugated polymers determines their optical spectroscopy and further shows how exciton delocalization is related to conformational and environmental disorder. If the multiscale structures in conjugated polymer systems are known, then using first-principles modeling of excitonic processes it is possible to predict a wide-range of spectroscopic observables. We propose a reverse-engineering protocol of using these experimental observables in combination with theoretical and computational modeling to determine the multiscale polymers structures, thus establishing quantitative structure-function predictions. Published by AIP Publishing.
机译:共轭聚合物体系中的激子临床化由聚合物构象和包装确定。由于激子删除器决定了光致发光的振动进展,光学光谱提供了与聚合物多尺度结构的间接链接。这种观点介绍了我们目前对PI缀合聚合物中的激子临床化如何确定其光学光谱的理论理解,进一步表明了激子临床化如何与构象和环境障碍有关。如果已知共轭聚合物系统中的多尺度结构,则使用兴奋过程的第一原理建模,可以预测广泛的光谱可观察品。我们提出了一种与理论和计算建模的结合使用这些实验观察的逆向工程方案,以确定多尺度聚合物结构,从而建立定量结构功能预测。通过AIP发布发布。

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