Sobczak Quentin, Kunche Aravindu, Magis Damien, Carrizo Daiann Sosa, Miqueu Karinne, Sotiropoulos Jean-Marc, Cloutet Eric, Brochon Cyril, Landais Yannick, Taton Daniel, Vignolle Joan
Laboratoire de Chimie des Polymères Organiques, CNRS, Université de Bordeaux IPB-ENSCPB, Pessac Cedex, France.
Université de Bordeaux, ISM, UMR 5255, 33400 Talence, France - CNRS, ISM, UMR 5255, Talence, France.
Nat Commun. 2021 Jul 2;12(1):4093. doi: 10.1038/s41467-021-24274-7.
Despite the ubiquity of singlet carbenes in chemistry, their utility as true monomeric building blocks for the synthesis of functional organic polymers has been underexplored. In this work, we exploit the capability of purposely designed mono- and bis-acyclic amino(aryl)carbenes to selectively dimerize as a general strategy to access diaminoalkenes and hitherto unknown amino-containing poly(p-phenylene vinylene)s (N-PPV's). The unique selectivity of the dimerization of singlet amino(aryl)carbenes, relative to putative C-H insertion pathways, is rationalized by DFT calculations. Of particular interest, unlike classical PPV's, the presence of amino groups in α-position of C=C double bonds in N-PPV's allows their physico-chemical properties to be manipulated in different ways by a simple protonation reaction. Hence, depending on the nature of the amino group (iPrN vs. piperidine), either a complete loss of conjugation or a blue-shift of the maximum of absorption is observed, as a result of the protonation at different sites (nitrogen vs. carbon). Overall, this study highlights that singlet bis-amino(aryl)carbenes hold great promise to access functional polymeric materials with switchable properties, through a proper selection of their substitution pattern.
尽管单线态卡宾在化学领域无处不在,但它们作为功能性有机聚合物合成中真正的单体构建单元的用途尚未得到充分探索。在这项工作中,我们利用特意设计的单环和双环氨基(芳基)卡宾选择性二聚的能力,作为一种通用策略来获得二氨基烯烃和迄今未知的含氨基聚(对亚苯基乙烯撑)(N-PPV)。相对于假定的C-H插入途径,单线态氨基(芳基)卡宾二聚的独特选择性通过密度泛函理论(DFT)计算得到了合理的解释。特别有趣的是,与经典的PPV不同,N-PPV中C=C双键α位上氨基的存在使得它们的物理化学性质可以通过简单的质子化反应以不同方式进行调控。因此,根据氨基的性质(异丙基氨基对哌啶),由于在不同位点(氮对碳)的质子化,会观察到共轭的完全丧失或吸收最大值的蓝移。总体而言,这项研究突出表明,通过适当选择其取代模式,单线态双氨基(芳基)卡宾在获得具有可切换性质的功能性聚合物材料方面具有巨大潜力。