首页> 外文期刊>The Journal of Organic Chemistry >Poly(cyclopropenone)s: Formal inclusion of the smallest hückel aromatic into π-conjugated polymers
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Poly(cyclopropenone)s: Formal inclusion of the smallest hückel aromatic into π-conjugated polymers

机译:聚(环丙烯酮):将最小的hückel芳烃正式掺入π共轭聚合物中

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摘要

The synthesis of precursors to π-conjugated cyclopropenium polymers is described. Monomers for chemical and electrochemical manipulation are easily prepared through electrophilic substitution of in situ generated cyclopropenium cations that are then hydrolyzed to the respective cyclopropenones. The unusually strong dipole moment associated with the cyclopropenone renders this core formally aromatic, an electronic structure that becomes more important within individual monomers upon protonation of the carbonyl function with trifluoroacetic acid or alkylation with triethyloxonium salts. The electronic properties of cyclopropenone polymers in their pristine states and after acidification are discussed along with conjugated carbonyl-containing polymers that are also acid sensitive but without the added element of aromaticity. We find that the increased contributions of cyclopropenium cation aromaticity restrict the quinoidal charge carriers due to the energetically less favorable proposition of disrupting the local aromatic stabilization.
机译:描述了π-共轭环丙烯聚合物的前体的合成。通过亲电取代原位生成的环丙烯阳离子,然后将其水解为相应的环丙烯酮,可以轻松制备用于化学和电化学操作的单体。与环丙烯酮相关的异常强的偶极矩使该核芯具有正式的芳香性,这种电子结构在用三氟乙酸使羰基官能化或用三乙基氧鎓盐进行烷基化后在单个单体中变得更加重要。讨论了处于原始状态和酸化后的环丙烯酮聚合物的电子性质,以及对酸也敏感但没有芳香元素的共轭含羰基聚合物。我们发现,由于在能量上不利于破坏局部芳香族稳定的主张,环丙烯阳离子芳香性的增加贡献限制了醌型载流子。

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