Department of Chemistry, Indian Institute of Technology Madras, Chennai, 600 036, Tamil Nadu, India.
Chemistry. 2021 Nov 17;27(64):16013-16020. doi: 10.1002/chem.202102920. Epub 2021 Oct 6.
While intramolecular Scholl oxidative coupling between two arenes is common, successful C-C heterocoupling between thiophene and arene is scarce. The latter is due to the notorious reactivity of thiophene towards polymerization under oxidative conditions. This report systematically demonstrates how topological variation of electronics and reactivity in thiophene substrates can lead to efficient oxidative heterocoupling. Bis(biaryl)thiophenes having reactive α- and β-positions open are the choice of substrates. The cyclizing arene partners are so electronically tuned for thiophene's reactivity (at α- and β-) as to establish C-C bond oxidatively generating symmetrical as well as unsymmetrical diphenanthrothiophenes which are basic thiananographenes. Depending on the cyclizing-couple's electronics, either arene- or thiophene-centered oxidation initiates C-C heterocoupling. The potential utility of these simple thiananographenes is further unfurled by converting them to functional N-/C-graphene segments that are aza-corannulene precursor and tetrabenzospirobifluorene. Their bright emission and extended electrochemical stability are remarkable that may be potentially important and applicable.
虽然两个芳环之间的分子内 Scholl 氧化偶联很常见,但噻吩和芳环之间成功的 C-C 杂偶联却很少见。这是由于噻吩在氧化条件下聚合的反应性非常强。本报告系统地证明了噻吩底物中电子和反应性的拓扑变化如何导致有效的氧化杂偶联。具有反应性的α-和β-位开放的双(联芳基)噻吩是首选的底物。环化芳族伙伴的电子被调谐,以适应噻吩的反应性(在α-和β-),从而通过氧化生成对称和不对称的二苯并噻吩,它们是基本的噻喃并并苯。根据环化偶联物的电子性质,芳环或噻吩中心的氧化引发 C-C 杂偶联。这些简单的噻喃并并苯的潜在用途通过将它们转化为功能的 N-/C-石墨烯片段进一步展开,这些片段是氮杂-corannulene 前体和四苯并螺二芴。它们具有显著的明亮发射和扩展的电化学稳定性,这可能是重要且适用的。