首页> 外文期刊>The Journal of Organic Chemistry >Intramolecular 'Hydroiminiumation and -amidiniumation' of Alkenes: A Convenient, Flexible, and Scalable Route to Cyclic Iminium and Imidazolinium Salts
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Intramolecular 'Hydroiminiumation and -amidiniumation' of Alkenes: A Convenient, Flexible, and Scalable Route to Cyclic Iminium and Imidazolinium Salts

机译:烯烃的分子内“氢化亚氨基化和-亚氨基化”:便捷,灵活且可扩展的环状亚胺和咪唑啉盐的路线

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摘要

Addition of a stoichiometric amount of HCl to alkenylaldimines, -formamidines, and -amidines results in the protonation of the sp~2-nitrogen atom. The resulting alkenylaldiminium, -formamidinium, and -amidinium salts can be isolated and fully characterized, including single-crystal X-ray diffraction studies. Heating solutions of these salts induces ring closure cleanly and regioselectively via formal "exo" addition of the nitrogen-hydrogen bond to the pendent carbon-carbon double bond, affording the corresponding cyclic aldiminium, dihydroisoquinolinium, and imidazolinium salts. Of special interest, novel 4,4-disubstituted imidazolinium salts are accessible via this synthetic route. Similarly, addition of phosgene to alkenyl ureas and alkenyl amides, followed by gentle heating, cleanly affords C-chloro imidazolinium, and cyclic C-chloro iminium salts, respectively. Treatment of the latter with tetrakis(triphenylphosphine)-palladium allows for the preparation of the first transition-metal complex bearing a cyclic arylaminocarbene as ligand. Deuterium labeling experiments suggest that the mechanism of the hydroiminiumation and -amidiniumation reactions involves an intramolecular proton transfer to the double bond in the rate-determining step. This novel synthetic methodology gives access to a variety of N-heterocyclic carbene (NHC) and cyclic alkyl- and arylaminocarbene (CAAC) precursors.
机译:向烯基醛亚胺,-甲form和-am中添加化学计算量的HCl会导致sp〜2-氮原子的质子化。所得的烯基醛亚胺盐,-甲ami鎓盐和-ami啶鎓盐可以被分离和充分表征,包括单晶X射线衍射研究。这些盐的加热溶液通过将氮-氢键正式“外切”加到悬垂的碳-碳双键上而干净地和区域选择性地引起闭环,从而提供了相应的环状醛二鎓,二氢异喹啉鎓和咪唑啉鎓盐。通过这种合成途径可得到新颖的4,4-二取代的咪唑啉鎓盐,这是特别令人感兴趣的。类似地,将光气加到烯基脲和烯基酰胺中,然后缓慢加热,分别纯净地得到C-氯咪唑啉鎓盐和环状C-氯亚胺鎓盐。用四(三苯基膦)-钯处理后者允许制备带有环状芳基氨基卡宾作为配体的第一过渡金属配合物。氘标记实验表明加氢亚氨基化和-ami氨基化反应的机理涉及在速率确定步骤中分子内质子转移至双键。这种新颖的合成方法使人们可以使用各种N-杂环卡宾(NHC)和环状烷基-和芳基氨基卡宾(CAAC)的前体。

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