Krompiec Stanisław, Kurpanik-Wójcik Aneta, Matussek Marek, Gołek Bogumiła, Mieszczanin Angelika, Fijołek Aleksandra
Institute of Chemistry, Faculty of Science and Technology, University of Silesia, Bankowa 14, 40-007 Katowice, Poland.
Materials (Basel). 2021 Dec 27;15(1):172. doi: 10.3390/ma15010172.
Phenyl, naphthyl, polyarylphenyl, coronene, and other aromatic and polyaromatic moieties primarily influence the final materials' properties. One of the synthetic tools used to implement (hetero)aromatic moieties into final structures is Diels-Alder cycloaddition (DAC), typically combined with Scholl dehydrocondensation. Substituted 2-pyranones, 1,1-dioxothiophenes, and, especially, 1,3-cyclopentadienones are valuable substrates for [4 + 2] cycloaddition, leading to multisubstituted derivatives of benzene, naphthalene, and other aromatics. Cycloadditions of dienes can be carried out with extrusion of carbon dioxide, carbon oxide, or sulphur dioxide. When pyranones, dioxothiophenes, or cyclopentadienones and DA cycloaddition are aided with acetylenes including masked ones, conjugated or isolated diynes, or polyynes and arynes, aromatic systems are obtained. This review covers the development and the current state of knowledge regarding thermal DA cycloaddition of dienes mentioned above and dienophiles leading to (hetero)aromatics via CO, CO, or SO extrusion. Particular attention was paid to the role that introduced aromatic moieties play in designing molecular structures with expected properties. Undoubtedly, the DAC variants described in this review, combined with other modern synthetic tools, constitute a convenient and efficient way of obtaining functionalized nanomaterials, continually showing the potential to impact materials sciences and new technologies in the nearest future.
苯基、萘基、多芳基苯基、蔻以及其他芳香和多芳香部分主要影响最终材料的性能。用于将(杂)芳香部分引入最终结构的合成工具之一是狄尔斯-阿尔德环加成反应(DAC),通常与肖尔脱氢缩合反应相结合。取代的2-吡喃酮、1,1-二氧代噻吩,尤其是1,3-环戊二烯酮是[4 + 2]环加成反应的有价值底物,可生成苯、萘和其他芳烃的多取代衍生物。二烯的环加成反应可以在二氧化碳、一氧化碳或二氧化硫的挤出过程中进行。当吡喃酮、二氧代噻吩或环戊二烯酮与包括掩蔽乙炔、共轭或孤立二炔、多炔或芳炔在内的乙炔辅助进行DA环加成反应时,可得到芳香体系。本综述涵盖了上述二烯与亲双烯体通过CO、CO或SO挤出进行热DA环加成反应生成(杂)芳烃的发展情况和当前的知识状态。特别关注了引入的芳香部分在设计具有预期性能的分子结构中所起的作用。毫无疑问,本综述中描述的DAC变体与其他现代合成工具相结合,构成了一种方便且高效的获得功能化纳米材料的方法,在不久的将来持续展现出对材料科学和新技术产生影响的潜力。