Kurpanik Aneta, Matussek Marek, Szafraniec-Gorol Grażyna, Filapek Michał, Lodowski Piotr, Marcol-Szumilas Beata, Ignasiak Witold, Małecki Jan Grzegorz, Machura Barbara, Małecka Magdalena, Danikiewicz Witold, Pawlus Sebastian, Krompiec Stanisław
Institute of Chemistry, Faculty of Science and Technology, University of Silesia, Bankowa 14, 40-007, Katowice, Poland.
Institute of Organic Chemistry, Polish Academy of Sciences, Kasprzaka 44/52, 01-224, Warsaw, Poland.
Chemistry. 2020 Sep 21;26(53):12150-12157. doi: 10.1002/chem.202001327. Epub 2020 Aug 28.
Diels-Alder cycloaddition of various dienophiles to the bay region of polycyclic aromatic hydrocarbons (PAHs) is a particularly effective and useful tool for the modification of the structure of PAHs and thereby their final properties. The Diels-Alder cycloaddition belongs to the single-step annulative π-extension (APEX) reactions and represents the maximum in synthetic efficiency for the constructions of π-extended PAHs including functionalised ones, nanographenes, and π-extended fused heteroarenes. Herein we report new applications of the APEX strategy for the synthesis of derivatives of 1,2-diarylbenzo[ghi]perylene, 1,2-diarylbenzo[ghi]perylenebisimide and 1,2-disubstituted-benzo[j]coronene. Namely, the so far unknown cycloaddition of 1,2-diarylacetylenes into the perylene and perylenebisimide bay regions was used. 1,2-Disubstituted-benzo[j]coronenes were obtained via cycloaddition of benzyne into 1,2-diarylbenzo[ghi]perylenes by using a new highly effective system for benzyne generation and/or high pressure conditions. Moreover, we report an unprecedented Diels-Alder cycloaddition-cycloaromatisation domino-type reaction between 1,4-(9,9-dialkylfluoren-3-yl)-1,3-butadiynes and perylene. The obtained diaryl-substituted core-extended PAHs were characterised by DFT calculation as well as electrochemical and spectroscopic measurements.
各种亲双烯体与多环芳烃(PAHs)的湾区进行狄尔斯-阿尔德环加成反应,是一种特别有效且有用的工具,可用于修饰PAHs的结构,进而改变其最终性质。狄尔斯-阿尔德环加成反应属于单步累积π-扩展(APEX)反应,代表了构建包括功能化的π-扩展PAHs、纳米石墨烯和π-扩展稠合杂芳烃在内的π-扩展PAHs的合成效率的最大值。在此,我们报告了APEX策略在合成1,2-二芳基苯并[ghi]苝、1,2-二芳基苯并[ghi]苝二酰亚胺和1,2-二取代苯并[j]蔻衍生物方面的新应用。具体而言,使用了1,2-二芳基乙炔与苝和苝二酰亚胺湾区迄今未知的环加成反应。通过使用一种用于生成苯炔的新型高效体系和/或高压条件,使苯炔与1,2-二芳基苯并[ghi]苝发生环加成反应,从而得到1,2-二取代苯并[j]蔻。此外,我们报告了1,4-(9,9-二烷基芴-3-基)-1,3-丁二炔与苝之间前所未有的狄尔斯-阿尔德环加成-环芳构化多米诺型反应。通过密度泛函理论(DFT)计算以及电化学和光谱测量对所得到的二芳基取代的核心扩展PAHs进行了表征。