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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Relation between intra-chain conduction and main-chain conformation of conducting polymers in solutions as studied by electric birefringence spectroscopy
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Relation between intra-chain conduction and main-chain conformation of conducting polymers in solutions as studied by electric birefringence spectroscopy

机译:电双折射光谱法研究溶液中导电聚合物的链内传导与主链构象之间的关系

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摘要

Frequency domain electric birefringence spectroscopy has been applied to a typical soluble conducting polymer, poly(3-hexylthiophene), in dilute solutions in order to investigate the isolated single-chain dynamics of conducting polymers. From the results, the intramolecular conduction mechanism in a single conducting polymer chains is revealed without interference from the inter-chain one. The change in hydrodynamic diameter of the polymer chain with varying temperature or solvent species clearly indicates the occurrence of a single-chain conformation transition, Further, it turns out that there exist two kinds of carrier transport process along the polymer chain with different diffusion distances and diffusion constants, which reflect a disorder effect due to conformational defects on the one-dimensional polymer chain.
机译:频域电双折射光谱技术已应用于稀溶液中的典型可溶性导电聚合物聚(3-己基噻吩),以研究导电聚合物的孤立单链动力学。根据结果​​,揭示了单条导电聚合物链中的分子内传导机理,而没有链间干扰。随着温度或溶剂种类的变化,聚合物链的流体动力学直径的变化清楚地表明了单链构象转变的发生。此外,事实证明,沿着聚合物链存在两种载流子迁移过程,具有不同的扩散距离和扩散常数,其反映由于一维聚合物链上的构象缺陷而引起的无序效应。

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