Spitler Eric L, Monson John M, Haley Michael M
Department of Chemistry and Materials Science Institute, University of Oregon, Eugene, Oregon 97403-1253, USA.
J Org Chem. 2008 Mar 21;73(6):2211-23. doi: 10.1021/jo701740n. Epub 2008 Feb 16.
Nine new bisdonor/bisacceptor-functionalized tetrakis(phenylethynyl)benzene (TPEB) and six new bis(dehydrobenzoannuleno)benzene (DBA) chromophores have been synthesized. The compounds consist of electron-donating dibutylaniline groups connected through a conjugated phenyl-acetylene scaffold to benzotrifluoride, bis(trifluoromethyl)phenyl, or pentafluorophenyl acceptor groups. In comparison to previously reported analogues utilizing nitrophenyl or benzonitrile acceptor groups, the weaker acceptor groups exhibit visibly fluorescent intramolecular charge transfer (ICT) behavior, moderately narrow optical band gaps, moderately high quantum yields, and strong fluorescence solvatochromism. In this series of molecules, the strongly inductive fluoro acceptor groups result in optical properties similar to the resonance acceptor analogues, making them promising candidates for optical materials device components. The data also support recent investigations that question the utility of using UV/vis spectroscopy alone as a qualitative measure of conjugation. The bisDBAs exhibit weaker ICT behavior and self-association in solution than their corresponding nitro analogues, but show greater stability to decomposition via polymerization and smaller optical band gaps than their acyclic analogues.
已合成了9种新型双供体/双受体功能化的四(苯乙炔基)苯(TPEB)和6种新型双(脱氢苯并环烯)苯(DBA)发色团。这些化合物由通过共轭苯乙炔支架连接到三氟甲苯、双(三氟甲基)苯基或五氟苯基受体基团的给电子二丁基苯胺基团组成。与先前报道的使用硝基苯基或苯腈受体基团的类似物相比,较弱的受体基团表现出明显的荧光分子内电荷转移(ICT)行为、适度窄的光学带隙、适度高的量子产率和强的荧光溶剂化显色。在这一系列分子中,强诱导性的氟受体基团导致光学性质类似于共振受体类似物,使其成为光学材料器件组件的有前途的候选物。数据还支持了最近对仅使用紫外/可见光谱作为共轭定性测量方法的实用性提出质疑的研究。双DBA在溶液中表现出比其相应的硝基类似物更弱的ICT行为和自缔合,但比其无环类似物表现出更高的抗聚合分解稳定性和更小的光学带隙。