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Tuning conformation assembly and charge transport properties of conjugated polymers by printing flow

机译:通过印刷流调节共轭聚合物的构象组装和电荷传输性质

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摘要

Intrachain charge transport is unique to conjugated polymers distinct from inorganic and small molecular semiconductors and is key to achieving high-performance organic electronics. Polymer backbone planarity and thin film morphology sensitively modulate intrachain charge transport. However, simple, generic nonsynthetic approaches for tuning backbone planarity and the ensuing multiscale assembly process do not exist. We first demonstrate that printing flow is capable of planarizing the originally twisted polymer backbone to substantially increase the conjugation length. This conformation change leads to a marked morphological transition from chiral, twinned domains to achiral, highly aligned morphology, hence a fourfold increase in charge carrier mobilities. We found a surprising mechanism that flow extinguishes a lyotropic twist-bend mesophase upon backbone planarization, leading to the observed morphology and electronic structure transitions.
机译:链内电荷传输是共轭聚合物所独有的,不同于无机和小分子半导体,并且是实现高性能有机电子的关键。聚合物主链的平面度和薄膜形态可以敏感地调节链内电荷传输。但是,不存在用于调整骨架平面性和随之而来的多尺度装配过程的简单,通用的非合成方法。我们首先证明,印刷流程能够使原本扭曲的聚合物主链平坦化,从而显着增加共轭长度。这种构象变化导致从手性,孪生结构域到非手性,高度对齐的形态发生明显的形态转变,因此电荷载流子迁移率增加了四倍。我们发现了一个令人惊讶的机制,该流动在骨架平面化时熄灭了溶致扭曲的中间相,导致观察到的形态和电子结构转变。

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