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通过液体π供体和TCNQ的交替超分子共聚形成的离子电荷转移液晶。

Ionic Charge-Transfer Liquid Crystals Formed by Alternating Supramolecular Copolymerization of Liquid π-Donors and TCNQ.

作者信息

Iguchi Hiroaki, Furutani Hidenori, Kimizuka Nobuo

机构信息

Department of Chemistry and Biochemistry, Graduate School of Engineering, Kyushu University, Fukuoka, Japan.

Department of Chemistry, Graduate School of Science, Tohoku University, Sendai, Japan.

出版信息

Front Chem. 2021 Mar 29;9:657246. doi: 10.3389/fchem.2021.657246. eCollection 2021.

Abstract

A new family of liquid π-donors, lipophilic dihydrophenazine (DHP) derivatives, show remarkably high π-electron-donor property which exhibit supramolecular alternating copolymerization with 7,7,8,8-tetracyanoquinodimethane (TCNQ), giving ionic charge-transfer (ICT) complexes. The ICT complexes form distinct columnar liquid crystalline (LC) mesophases with well-defined alternating molecular alignment as demonstrated by UV-Vis-NIR spectra, IR spectra, and X-ray diffraction (XRD) patterns. These liquid crystalline ICT complexes display unique phase transitions in response to mechanical stress: the columnar ICT phase is converted to macroscopically oriented smectic-like mesophases upon applying shear force. Although there exist reports on the formation of ICT in the crystalline state, this study provides the first rational identification of ICT mesophases based on the spectroscopic and structural data. The liquid crystalline ICT phases are generated by strong electronic interactions between the liquid π-donors and solid acceptors. It clearly shows the significance of simultaneous fulfillment of strong π-donating ability and ordered self-assembly of the stable ICT pairs. The flexible, stimuli-responsive structural transformation of the ICT complexes offer a new perspective for designing processable CT systems with controlled hierarchical self-assembly and electronic structures.

摘要

一类新型的液体π供体,即亲脂性二氢吩嗪(DHP)衍生物,表现出极高的π电子供体性质,能与7,7,8,8-四氰基对苯二醌二甲烷(TCNQ)发生超分子交替共聚,形成离子电荷转移(ICT)配合物。如紫外-可见-近红外光谱、红外光谱和X射线衍射(XRD)图谱所示,这些ICT配合物形成具有明确交替分子排列的独特柱状液晶(LC)中间相。这些液晶ICT配合物在受到机械应力时表现出独特的相变:施加剪切力时,柱状ICT相转变为宏观取向的类近晶相。尽管已有关于晶体状态下ICT形成的报道,但本研究基于光谱和结构数据首次对ICT中间相进行了合理鉴定。液晶ICT相是由液体π供体与固体受体之间强烈的电子相互作用产生的。这清楚地表明了同时具备强π供体能力和稳定ICT对的有序自组装的重要性。ICT配合物灵活的、对刺激有响应的结构转变为设计具有可控分级自组装和电子结构的可加工CT系统提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3e1/8039295/98cd135a1f74/fchem-09-657246-g0008.jpg

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