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硼氮掺杂纳米石墨烯:源自硼嗪前体的合成故事

Boron-Nitrogen-Doped Nanographenes: A Synthetic Tale from Borazine Precursors.

作者信息

Dosso Jacopo, Battisti Tommaso, Ward Benjamin D, Demitri Nicola, Hughes Colan E, Williams P Andrew, Harris Kenneth D M, Bonifazi Davide

机构信息

School of Chemistry, Cardiff University, Park Place, Cardiff, CF10 3AT, UK.

Elettra-Sincrotrone Trieste, S.S. 14 Km 163.5, Area Science Park, 34149, Basovizza, Trieste, Italy.

出版信息

Chemistry. 2020 May 20;26(29):6608-6621. doi: 10.1002/chem.201905794. Epub 2020 Mar 24.

Abstract

In this work, a comprehensive account of the authors' synthetic efforts to prepare borazino-doped hexabenzocoronenes by using the Friedel-Crafts-type electrophilic aromatic substitution is reported. Hexafluoro-functionalized aryl borazines, bearing an ortho fluoride leaving group on each of the N- and B-aryl rings, was shown to lead to cascade-type electrophilic aromatic substitution events in the stepwise C-C bond formation, giving higher yields of borazinocoronenes than those obtained with borazine precursors bearing fluoride leaving groups at the ortho positions of the B-aryl substituents. By using this pathway, an unprecedented boroxadizine-doped PAH featuring a gulf-type periphery could be isolated, and its structure proven by single-crystal X-ray diffraction analysis. Mechanistic studies on the stepwise Friedel-Crafts-type cyclization suggest that the mechanism of the planarization reaction proceeds through extension of the π system. To appraise the doping effect of the boroxadizine unit on the optoelectronic properties of topology-equivalent molecular graphenes, the all-carbon and pyrylium PAH analogues, all featuring a gulf-type periphery, were also prepared. As already shown for the borazino-doped hexabenzocoronene, the replacement of the central benzene ring by its B N O congener widens the HOMO-LUMO gap and dramatically enhances the fluorescence quantum yield.

摘要

在这项工作中,报道了作者通过傅克型亲电芳香取代反应合成硼嗪掺杂六苯并蔻的综合研究成果。结果表明,在N -芳基环和B -芳基环上均带有邻位氟离去基团的六氟官能化芳基硼嗪,在逐步形成C - C键的过程中会引发级联型亲电芳香取代反应,相较于在B -芳基取代基邻位带有氟离去基团的硼嗪前体,能得到更高产率的硼嗪并蔻。通过该途径,可以分离出一种前所未有的具有海湾型外围结构的硼恶嗪掺杂多环芳烃,并通过单晶X射线衍射分析证实其结构。对逐步傅克型环化反应的机理研究表明,平面化反应的机理是通过π体系的扩展进行的。为了评估硼恶嗪单元对拓扑等效分子石墨烯光电性质的掺杂效果,还制备了均具有海湾型外围结构的全碳和吡喃鎓多环芳烃类似物。正如硼嗪掺杂六苯并蔻所显示的那样,用其B N O同系物取代中心苯环会拓宽HOMO - LUMO能隙并显著提高荧光量子产率。

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