Efficient synthesis of fluorinated triphenylenes with enhanced arene-perfluoroarene interactions in columnar mesophases.

IF 2.2 4区 化学 Q2 CHEMISTRY, ORGANIC Beilstein Journal of Organic Chemistry Pub Date : 2024-12-16 eCollection Date: 2024-01-01 DOI:10.3762/bjoc.20.270
Yang Chen, Jiao He, Hang Lin, Hai-Feng Wang, Ping Hu, Bi-Qin Wang, Ke-Qing Zhao, Bertrand Donnio
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Abstract

The high potential of non-covalent arene-fluoroarene intermolecular interactions in the design of liquid crystals lies in their ability to strongly promote self-assembly, improve the order and stability of the supramolecular mesophases, and enable tuneability of the optical and electronic properties, which can potentially be exploited for advanced applications in display technologies, photonic devices, sensors, and organic electronics. We recently successfully reported the straightforward synthesis of several mesogens containing four lateral aliphatic chains and derived from the classical triphenylene core self-assembling in columnar mesophases based on this paradigm. These mesogenic compounds were simply obtained in good yields by the nucleophilic substitution (SNFAr) of various types of commercially available fluoroarenes with the electrophilic organolithium derivatives 2,2'-dilithio-4,4',5,5'-tetraalkoxy-1,1'-biphenyl (2Li-BP n). In a continuation of this study, aiming at testing the limits of the reaction and providing a large diversity of structures, a structurally related series of compounds is reported here, namely 1,2,4-trifluoro-6,7,10,11-tetraalkoxy-3-(perfluorophenyl)triphenylenes (F n). They were obtained by reacting the above mentioned 2,2'-dilithiobiphenyl derivatives with decafluorobiphenyl, C6F5-C6F5. These compounds differ from the previously reported series, 1,2,4-trifluoro-6,7,10,11-tetraalkoxy-3-aryltriphenylenes (PH n), solely by the substitution of the terminal phenyl ring with a pentafluorophenyl ring. Thus, as expected, they display a Colhex mesophase over large temperature ranges, with only small differences in the mesophase stability and transition temperatures. Furthermore, the presence of the terminal fluorophenyl group enables a subsequent second annulation, yielding a new series of extended polyaromatic mesomorphic compounds, i.e., 1,1',3,3',4,4'-hexafluoro-6,6',7,7',10,10',11,11'-octaalkoxy-2,2'-bitriphenylene (G nm) which were found to display a Colrec mesophase. The specific nucleophilic substitution patterns of the F n derivatives and the antiparallel stacking mode into columnar structures stabilized by arene-perfluoroarene intermolecular interactions were confirmed by the single-crystal structure of the alkoxy-free side chain analog, i.e., 1,2,4-trifluoro-3-(perfluorophenyl)triphenylene (F). UV-vis absorption and fluorescence emission spectroscopies reveal green photoluminescence with fluorescence quantum yields of up to 33% for the F n derivatives. The J-aggregation for the inner fluorine-substituted dimers G nm is energetically and stereoelectronically more favorable and G66 exhibits thin-film fluorescence with a large red-shift of the emission peak.

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在柱状中间相中增强芳烃-全氟芳烃相互作用的氟化三苯的高效合成。
非共价芳烃-氟芳烃分子间相互作用在液晶设计中的高潜力在于它们能够强烈地促进自组装,改善超分子中间相的秩序和稳定性,并实现光学和电子特性的可调性,这可能被用于显示技术、光子器件、传感器和有机电子的先进应用。我们最近成功地报道了几种包含四个外侧脂肪链的介原的直接合成,这些介原是基于这种范式在柱状介相中由经典的三苯基核心自组装而来的。这些介生化合物是通过亲电有机锂衍生物2,2'-二硫代-4,4',5,5'-四烷氧基-1,1'-联苯(2Li-BP n)的亲核取代(SNFAr)简单地以良好的收率获得的。在本研究的继续,旨在测试反应的极限并提供大量的结构多样性,这里报告了一系列结构相关的化合物。即1,2,4-三氟-6,7,10,11-四烷氧基-3-(全氟苯基)三苯(fn)。它们是由上述2,2'-二硫代联苯衍生物与十氟联苯C6F5-C6F5反应而得的。这些化合物与先前报道的1,2,4-三氟-6,7,10,11-四烷氧基-3-芳基三苯乙烯(phn)系列不同,仅仅是末端苯基环被五氟苯基环取代。因此,正如预期的那样,它们在很大的温度范围内显示出Colhex中间相,中间相稳定性和转变温度只有很小的差异。此外,末端氟苯基的存在使得随后的第二次环化成为可能,产生一系列新的扩展的多芳亚对称化合物,即1,1',3,3',4,4'-六氟-6,6',7,7',10,10',11,11'-八烷氧基-2,2'-二苯醚(G nm),这些化合物被发现具有Colrec中间相。无烷氧侧链类似物,即1,2,4-三氟-3-(全氟苯基)三苯(F)的单晶结构证实了F n衍生物的特定亲核取代模式和反平行堆叠模式为芳烃-全氟芳烃分子间相互作用稳定的柱状结构。紫外-可见吸收光谱和荧光发射光谱显示F n衍生物的绿色光致发光,荧光量子产率高达33%。G nm内氟取代二聚体的j聚集在能量和立体电子上更有利,G66表现出薄膜荧光,发射峰红移较大。
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来源期刊
CiteScore
4.90
自引率
3.70%
发文量
167
审稿时长
1.4 months
期刊介绍: The Beilstein Journal of Organic Chemistry is an international, peer-reviewed, Open Access journal. It provides a unique platform for rapid publication without any charges (free for author and reader) – Platinum Open Access. The content is freely accessible 365 days a year to any user worldwide. Articles are available online immediately upon publication and are publicly archived in all major repositories. In addition, it provides a platform for publishing thematic issues (theme-based collections of articles) on topical issues in organic chemistry. The journal publishes high quality research and reviews in all areas of organic chemistry, including organic synthesis, organic reactions, natural product chemistry, structural investigations, supramolecular chemistry and chemical biology.
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