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Enhancing charge mobilities in self-assembled N···I halogen bonded organic semiconductors: A design approach based on experimental and computational perspectives

机译:提高自组装N···I卤素键合有机半导体中的电荷迁移率:一种基于实验和计算观点的设计方法

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摘要

Charge transport in pyridine-ethynyliodophenyl supramolecules that involve intermolecular halogen bonding is studied by a combined experimental and computational approach. Selective fluorination of the molecules determines their crystallization pattern and is found to potentially increase the charge mobilities in the crystal. We report the synthesis of the molecules, full chemical characterization and resolved crystal structures. Computational analysis of the charge transport is provided to understand at the molecular level the structure-function relationships determining the charge mobilities. Combination of selective fluorination, halogen bonding motif and increased it system is highlighted as bearing the potential to achieve both enhanced hole and electron mobilities.
机译:通过结合实验和计算方法,研究了涉及分子间卤素键合的吡啶-乙炔基碘苯基超分子中的电荷传输。分子的选择性氟化决定了它们的结晶模式,并发现可能增加晶体中的电荷迁移率。我们报告了分子的合成,完整的化学特征和解析的晶体结构。提供了电荷迁移的计算分析,以在分子水平上理解决定电荷迁移率的结构-功能关系。选择性氟化,卤素键基序和增加的it系统的组合突出显示出具有实现增强的空穴和电子迁移率的潜力。

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