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PMID: 16608354 已发表 · ppublish 英语

Mechanism of Al(III)-catalyzed transamidation of unactivated secondary carboxamides.

Journal of the American Chemical Society ·第 128 卷 ·第 15 期 ·2007-10-04

Hoerter Justin M, Otte Karin M, Gellman Samuel H, Stahl Shannon S

摘要

The carbon-nitrogen bond of secondary carboxamides is generally thermodynamically and kinetically unreactive; however, we recently discovered that the trisamidoaluminum(III) dimer Al2(NMe2)6 catalyzes facile transamidation between simple secondary carboxamides and primary amines under moderate conditions. The present report describes kinetic and spectroscopic studies that illuminate the mechanism of this unusual transformation. The catalytic reaction exhibits a bimolecular rate law with a first-order dependence on the Al(III) and amine concentrations. No rate dependence on the carboxamide concentration is observed. Spectroscopic studies (1H and 13C NMR, FTIR) support a catalyst resting state that consists of a mixture of tris-(kappa2-amidate)aluminum(III) complexes. These results, together with the presence of a significant kinetic isotope effect when deuterated amine substrate (RND2) is used, implicate a mechanism in which the amine undergoes preequilibrium coordination to aluminum and proton transfer to a kappa2-amidate ligand to yield an Al(kappa2-amidate)2(kappa1-carboxamide)(NHR) complex, followed by rate-limiting intramolecular delivery of the amido ligand (NHR) to the neutral Al(III)-activated kappa1-carboxamide. Noteworthy in this mechanism is the bifunctional character of Al(III), which is capable of activating both the amine nucleophile and the carboxamide electrophile in the reaction.

文献信息
期刊
Journal of the American Chemical Society
期刊简称
J Am Chem Soc
发表日期
2007-10-04
收录日期
2006-04-12
更新日期
2006-04-12
语言
英语
国家/地区
United States
NLM ID
7503056
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