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首页> 外文期刊>Wiley Interdisciplinary Reviews. Developmental Biology >Molecular Considerations for Mesophase Interaction and Alignment of Lyotropic Liquid Crystalline Semiconducting Polymers
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Molecular Considerations for Mesophase Interaction and Alignment of Lyotropic Liquid Crystalline Semiconducting Polymers

机译:中间相相互作用的分子考虑因素的胞间液晶半导体聚合物的相互作用及对准

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摘要

Intermolecular interactions in conjugated polymers influence crystallinity, self-assembly, and packing motif, factors which in turn crucially impact charge transport properties such as carrier mobility in organic electronic devices. Correlated alignment of molecular and crystalline morphologies provides direct pathways for charge carriers to follow; however, the role of intermolecular interactions in achieving this is unexplored. Herein, we synthesize a series of lyotropic liquid crystalline conjugated polymers with variable side-chain structure to lend distinct steric repulsion and van der Waals attractive forces to each mesophase. We use this to investigate the role of intermolecular interactions on mesophase alignment. The strength of intermolecular interaction for each mesophase is compared by measuring melting temperature, pi-stacking distance, and the Maier-Saupe interaction parameter. In general we find that side-chain structure can impact interaction strength by varying steric repulsion and backbone attractions and that the Maier-Saupe interaction parameters correlate with higher degrees of alignment after shearing, achieving a dichroic absorbance ratio of up to 2. This observation is used to develop equilibrium processing methods for fabricating macroscopically aligned polymer substrates used in transistors, improving mobility by a factor of 3 compared to spin-coated devices.
机译:共轭聚合物中的分子间相互作用影响结晶度,自组装和包装基序,其因子又弯曲的电荷输送性能,例如有机电子器件中的载流子迁移率。相关的分子和结晶形态的相关对准为电荷载体提供直接途径;然而,分子间相互作用在实现这方面的作用是未开发的。在此,我们合成一种具有可变侧链结构的一系列旋转液液晶共轭聚合物,以赋予各种中间相的明显的空间排斥和范德华有吸引力的力。我们用它来研究分子间相互作用对中间相对取向的作用。通过测量熔化温度,PI堆叠距离和Maier-Saupe相互作用参数来比较每个中间相的分子间相互作用的强度。一般来说,我们发现侧链结构可以通过不同的空间排斥和骨干景点来影响相互作用的强度,并且毛利赛赛互动参数与剪切后的更高程度的对准程度相关,从而实现最多2.此观察的二向色光吸光度比。用于开发用于制造晶体管中使用的宏观对齐的聚合物基材的平衡处理方法,与旋涂装置相比,将迁移率提高3倍。

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