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[Rh(III)(Cp*)]催化的苯甲酸与N-氯代氨基甲酸盐和N-氯代吗啉的邻位选择性直接C(sp(2))-H键酰胺化/胺化反应。功能化邻氨基苯甲酸的通用合成方法。

[Rh(III)(Cp*)]-catalyzed ortho-selective direct C(sp(2))-H bond amidation/amination of benzoic acids by N-chlorocarbamates and N-chloromorpholines. A versatile synthesis of functionalized anthranilic acids.

作者信息

Ng Fo-Ning, Zhou Zhongyuan, Yu Wing-Yiu

机构信息

State Key Laboratory of Chirosciences, Department of Applied Biology and Chemical Technology, The Hong Kong Polytechnic University, Hung Hom, Kowloon (Hong Kong), Fax: (+852) 2364-9932.

出版信息

Chemistry. 2014 Apr 7;20(15):4474-80. doi: 10.1002/chem.201304855. Epub 2014 Mar 5.

Abstract

A Rh(III) -catalyzed direct ortho-CH amidation/amination of benzoic acids with N-chlorocarbamates/N-chloromorpholines was achieved, giving anthranilic acids in up to 85 % yields with excellent ortho-selectivity and functional-group tolerance. Successful benzoic acid aminations were achieved with carbamates bearing various amide groups including NHCO2 Me, NHCbz, and NHTroc (Cbz=carbobenzyloxy; Troc=trichloroethylchloroformate), as well as secondary amines, such as morpholines, piperizines, and piperidines, furnishing highly functionalized anthranilic acids. A stoichiometric reaction of a cyclometallated rhodium(III) complex of benzo[h]quinoline with a silver salt of N-chlorocarbamate afforded an amido-rhodium(III) complex, which was isolated and structurally characterized by X-ray crystallography. This finding confirmed that the CN bond formation results from the cross-coupling of N-chlorocarbamate with the aryl-rhodium(III) complex. Yet, the mechanistic details regarding the CN bond formation remain unclear; pathways involving 1,2-aryl migration and rhodium(V)- nitrene are plausible.

摘要

实现了铑(III)催化苯甲酸与N-氯代氨基甲酸酯/N-氯代吗啉的直接邻位CH酰胺化/胺化反应,以高达85%的产率得到邻氨基苯甲酸,具有出色的邻位选择性和官能团耐受性。使用带有各种酰胺基团(包括NHCO2Me、NHCbz和NHTroc,Cbz = 苄氧羰基;Troc = 三氯乙基氯甲酸酯)的氨基甲酸酯以及仲胺(如吗啉、哌嗪和哌啶)成功实现了苯甲酸胺化反应,得到了高度官能化的邻氨基苯甲酸。苯并[h]喹啉的环金属化铑(III)配合物与N-氯代氨基甲酸酯的银盐进行化学计量反应,得到了一种酰胺基铑(III)配合物,通过X射线晶体学对其进行了分离和结构表征。这一发现证实了CN键的形成是由N-氯代氨基甲酸酯与芳基铑(III)配合物的交叉偶联所致。然而,关于CN键形成的机理细节仍不清楚;涉及1,2-芳基迁移和铑(V)-氮宾的途径是合理的。

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