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Theoretical Analysis of Aggregation in Block-Copolymer Films: The Optical Signature

机译:嵌段共聚物薄膜聚集的理论分析:光学特征

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We focus this work on the theoretical investigation of the block-copolymer poly [oxyoctyleneoxy-(2,6-dimethoxy-1,4phenylene-1,2-ethinylene-phenanthrene- 2,4diyl) named as LaPPS19, recently proposed for optoelectronic applications. We used for that a variety of methods, from molecular mechanics to quantum semiempirical techniques (AMI, ZINDO/S-CIS). Our results show that as expected isolated LaPPS19 chains present relevant electron localization over the phenanthrene group. We found, however, that LaPPS19 could assemble in a pi-stacked form, leading to impressive interchain interaction; the stacking induces electronic delocalization between neighbor chains and introduces new states below the phenanthrene-related absorption; these results allowed us to associate the red-shift of the absorption edge, seen in the experimental results, to spontaneous pi-stack aggregation of the chains.
机译:我们将这项工作的重点放在最近提出的用于光电应用的嵌段共聚物聚[氧辛烯氧基-(2,6-二甲氧基-1,4-亚苯基-1,2-亚乙撑菲-2,4-二基)的理论研究上。我们使用了各种方法,从分子力学到量子半经验技术(AMI,ZINDO / S-CIS)。我们的结果表明,按预期分离的LaPPS19链在菲基团上呈现出相关的电子定位。但是,我们发现LaPPS19可以pi堆叠的形式组装,从而导致令人印象深刻的链间交互。堆积引起相邻链之间的电子离域并在菲相关的吸收以下引入新的状态;这些结果使我们能够将吸收边缘的红移(如实验结果所示)与链的自发pi-stack聚集相关联。

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