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通过中离子型N-杂环烯烃突破亲核性标度的上限

Pushing the Upper Limit of Nucleophilicity Scales by Mesoionic N-Heterocyclic Olefins.

作者信息

Eitzinger Andreas, Reitz Justus, Antoni Patrick W, Mayr Herbert, Ofial Armin R, Hansmann Max M

机构信息

Department Chemie, Ludwig-Maximilians-Universität München, Butenandtstr. 5-13 (Haus F), 81377, München, Germany.

Fakultät für Chemie und Chemische Biologie, Technische Universität Dortmund, Otto-Hahn-Str. 6, 44227, Dortmund, Germany.

出版信息

Angew Chem Int Ed Engl. 2023 Oct 2;62(40):e202309790. doi: 10.1002/anie.202309790. Epub 2023 Aug 29.

Abstract

A series of mesoionic, 1,2,3-triazole-derived N-heterocyclic olefins (mNHOs), which have an extraordinarily electron-rich exocyclic CC-double bond, was synthesized and spectroscopically characterized, in selected cases by X-ray crystallography. The kinetics of their reactions with arylidene malonates, ArCH=C(CO Et) , which gave zwitterionic adducts, were investigated photometrically in THF at 20 °C. The resulting second-order rate constants k (20 °C) correlate linearly with the reported electrophilicity parameters E of the arylidene malonates (reference electrophiles), thus providing the nucleophile-specific N and s parameters of the mNHOs according to the correlation lg k (20 °C)=s (N+E). With 21<N<32, the mNHOs are much stronger nucleophiles than conventional NHOs. Some mNHOs even excel the reactivity of mono- and diacceptor-substituted carbanions. It is exemplarily shown that the reactivity parameters thus obtained allow to calculate the rate constants for mNHO reactions with further Michael acceptors and predict the scope of reactions with other electrophilic reaction partners including carbon dioxide, which gives zwitterionic mNHO-carboxylates. The nucleophilicity parameters N correlate linearly with a linear combination of the quantum-chemically calculated methyl cation affinities and buried volumes of mNHOs, which offers a valuable tool to tailor the reactivities of strong carbon nucleophiles.

摘要

合成了一系列中离子型、源自1,2,3 - 三唑的N - 杂环烯烃(mNHOs),其具有特别富电子的环外碳 - 碳双键,并通过光谱进行了表征,在某些情况下还通过X射线晶体学进行了表征。研究了它们与亚苄基丙二酸酯ArCH = C(CO₂Et)₂反应生成两性离子加合物的动力学,于20℃在四氢呋喃中通过光度法进行测定。所得的二级速率常数k(20℃)与报道的亚苄基丙二酸酯(参考亲电试剂)的亲电参数E呈线性相关,从而根据lg k(20℃)=s(N + E)相关性得出mNHOs的亲核试剂特异性N和s参数。N值在21 < N < 32范围内,mNHOs是比传统NHOs更强的亲核试剂。一些mNHOs甚至超过了单受体和双受体取代碳负离子的反应活性。示例性地表明,由此获得的反应活性参数可用于计算mNHO与其他迈克尔受体反应的速率常数,并预测与包括二氧化碳在内的其他亲电反应伙伴的反应范围,二氧化碳会生成两性离子型mNHO - 羧酸盐。亲核性参数N与量子化学计算的甲基阳离子亲和力和mNHOs埋藏体积的线性组合呈线性相关,这为调整强碳亲核试剂的反应活性提供了一个有价值的工具。

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