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芘并稠环芳烃的区域异构体:合成、柱状介晶态和光学性质。

Pyrene-Fused Poly-Aromatic Regioisomers: Synthesis, Columnar Mesomorphism, and Optical Properties.

机构信息

College of Chemistry and Materials Science, Sichuan Normal University, Chengdu 610066, China.

Institut de Physique et Chimie des Matériaux de Strasbourg (IPCMS), CNRS-Université de Strasbourg (UMR 7504), 67034 Strasbourg, France.

出版信息

Molecules. 2023 Feb 10;28(4):1721. doi: 10.3390/molecules28041721.

Abstract

π-Extended pyrene compounds possess remarkable luminescent and semiconducting properties and are being intensively investigated as electroluminescent materials for potential uses in organic light-emitting diodes, transistors, and solar cells. Here, the synthesis of two sets of pyrene-containing π-conjugated polyaromatic regioisomers, namely 2,3,10,11,14,15,20,21-octaalkyloxypentabenzo[,,,,]pentaphene () and 2,3,6,7,13,14,17,18-octaalkyloxydibenzo[,]phenanthro [9,10-]picene (), is reported. They were obtained using the Suzuki-Miyaura cross-coupling in tandem with Scholl oxidative cyclodehydrogenation reactions from the easily accessible precursors 1,8- and 1,6-dibromopyrene, respectively. Both sets of compounds, equipped with eight peripheral aliphatic chains, self-assemble into a single hexagonal columnar mesophase, with one short-chain homolog also exhibiting another columnar mesophase at a lower temperature, with a rectangular symmetry; isomers also possess wider mesophase ranges and higher mesophases' stability than their homologs. These polycyclic aromatic hydrocarbons all show a strong tendency of face-on orientation on the substrate and could be controlled to edge-on alignment through mechanical shearing of interest for their implementation in photoelectronic devices. In addition, both series and display green-yellow luminescence, with high fluorescence quantum yields, around 30%. In particular, exhibit a blue shift phenomenon in both absorption and emission with respect to their isomers. DFT results were in good agreement with the optical properties and with the stability ranges of the mesophases by confirming the higher divergence from the flatness of compared with . Based on these interesting properties, these isomers could be potentially applied not only in the field of fluorescent dyes but also in the field of organic photoelectric semiconductor materials as electron transport materials.

摘要

π-扩展的苝化合物具有显著的发光和半导体性质,并且作为电致发光材料正在被深入研究,有望应用于有机发光二极管、晶体管和太阳能电池。在这里,我们报道了两组含苝的π-共轭多环芳烃区域异构体的合成,即 2,3,10,11,14,15,20,21-辛烷氧基五苯并[,,,,]戊并五苯()和 2,3,6,7,13,14,17,18-辛烷氧基二苯并[,]菲[9,10-]并二萘()。它们是通过铃木-宫浦交叉偶联与舒尔氧化环脱氢反应,分别从易得的 1,8-和 1,6-二溴苝前体制得的。两组化合物均带有八个外围脂肪链,自组装成单一的六角柱状介晶相,其中一个短链同系物在较低温度下也呈现另一种柱状介晶相,具有矩形对称性;与同系物相比,异构体还具有更宽的介晶相范围和更高的介晶相稳定性。这些多环芳烃在基底上都表现出强烈的面向上取向的趋势,可以通过机械剪切控制为边缘取向,这对于它们在光电子器件中的应用是很有意义的。此外,这两个系列和都显示出强烈的绿色-黄色发光,荧光量子产率约为 30%。特别是,与同系物相比,在吸收和发射方面都表现出蓝移现象。DFT 结果与光学性质和介晶相的稳定性范围很好地吻合,证实了与相比,具有更高的偏离平坦度。基于这些有趣的性质,这些异构体不仅可以潜在地应用于荧光染料领域,还可以应用于有机光电半导体材料领域,作为电子传输材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1048/9959431/a7b1127b9d0f/molecules-28-01721-ch001.jpg

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