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超分子手性在很大程度上调节共轭聚合物的化学掺杂。

Supramolecular chirality largely modulates chemical doping of conjugated polymers.

作者信息

Xu Zhuang, Saiev Shamil, Qian Peisen, Nabei Yoji, Wang Ziming, Rinehart Joshua M, Österholm Anna M, Jones Austin L, Lee Jong-Hoon, Hwang Changhyun, Wang Siqing, Sun Rui, Shin Dongguen, Jeon Sanghyun, Elangovan Kavinraaj Ella, Vura-Weis Josh, Coropceanu Veaceslav, Rodríguez-López Joaquín, Reynolds John R, Sun Dali, Brédas Jean-Luc, Diao Ying

机构信息

Department of Chemical and Biomolecular Engineering, Department of Chemistry, Beckman Institute for Advanced Science and Technology, University of Illinois Urbana-Champaign, 600 S. Mathews Avenue, Urbana, IL, USA.

Department of Chemistry and Biochemistry, The University of Arizona, Tucson, AZ, USA.

出版信息

Nat Commun. 2025 Sep 25;16(1):8381. doi: 10.1038/s41467-025-62915-3.

Abstract

Chemical doping has unlocked the touted potential of conjugated polymers by significantly boosting their conductivity and device performance. Yet, the relationship between doping and the polymers' complex, multiscale morphology remains elusive. Herein, we report a surprising find that supramolecular chirality, which up to now had not been considered a parameter relevant to doping, significantly boosts the underpinning redox reaction in conjugated polymer thin films. The chiral helical structures arise during an evaporative assembly process upon meniscus-guided coating, when the originally racemic conjugated polymer chains aggregate first and assemble into chiral twist-bent nematic mesophases which "imprint" their solution-state structure into solid thin films. By manipulating the solution aggregate structures through only subtle variations in the solvent nature, we modulate the structures of the liquid crystal phases to access a broad spectrum of supramolecular chirality, from achiral, to weakly chiral, and to strongly chiral. The differential solubilities of the side-chains and backbones in various solvent environments-elucidated by molecular dynamics simulations-underpin transitions in solution assembly behaviors. Upon sequential doping, the strongly chiral film exhibits a markedly higher charge carrier concentration leading to the highest doping efficiency and electrical conductivity, followed by the weakly chiral and the achiral films. Such increased conductivity in chiral structures is observed across three sets of polymer systems. We further suggest that enhanced crystallinity from chiral assembly facilitates the doping process, while chirality-induced spin selectivity may accelerate oxidation over reduction, together resulting in increased doping efficiency in chiral structures.

摘要

化学掺杂通过显著提高共轭聚合物的导电性和器件性能,释放了其备受吹捧的潜力。然而,掺杂与聚合物复杂的多尺度形态之间的关系仍然难以捉摸。在此,我们报告了一个惊人的发现,即超分子手性(迄今为止尚未被视为与掺杂相关的参数)显著促进了共轭聚合物薄膜中的基础氧化还原反应。手性螺旋结构在弯月面引导涂层的蒸发组装过程中产生,当原本外消旋的共轭聚合物链首先聚集并组装成手性扭曲弯曲向列中间相时,这些中间相将其溶液态结构“印记”到固体薄膜中。通过仅对溶剂性质进行细微变化来操纵溶液聚集结构,我们调节液晶相的结构,以获得从非手性到弱手性再到强手性的广泛超分子手性。分子动力学模拟阐明了侧链和主链在各种溶剂环境中的不同溶解度,这是溶液组装行为转变的基础。在顺序掺杂时,强手性薄膜表现出明显更高的电荷载流子浓度,从而导致最高的掺杂效率和电导率,其次是弱手性薄膜和非手性薄膜。在三组聚合物体系中均观察到了手性结构中这种导电性的增加。我们进一步表明,手性组装增强的结晶度促进了掺杂过程,而手性诱导的自旋选择性可能加速氧化而非还原,共同导致手性结构中掺杂效率的提高。

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