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机构地区:[1]温州大学化学与材料工程学院,温州325035
出 处:《有机化学》2013年第1期18-35,共18页Chinese Journal of Organic Chemistry
基 金:温州大学引进人才科研启动经费;国家自然科学基金(No.20902070);教育部第40批留学回国人员科研启动金;浙江省自然科学基金(No.Y4100579);钱江人才计划D类(No.QJD0902004)资助项目~~
摘 要:与其他胺和酰胺衍生物的合成方法相比,过渡金属催化醇与各类胺和酰胺的脱水N-烷基化反应是一种相对绿色、原子经济性较高的方法,一般被称为"借氢"或"氢自动转移"反应及其方法学.近年来,在空气氛围下过渡金属催化醇与胺和酰胺的有氧脱水N-烷基化反应,可使用更稳定的金属催化剂、可在无配体、空气等更温和简单的条件下进行,也引起了人们的极大关注.主要介绍近年来过渡金属催化下醇与胺和酰胺在空气或者氧化剂作用下构建C—N,C=N键合成胺和酰胺衍生物以及亚胺类化合物的有氧脱水反应进展情况,同时也对相关有氧脱水C-烷基化反应进行简单介绍.相关反应的机理研究也将作适当讨论.In comparison with other methods, transition metal-catalyzed dehydrative N-alkylation of amines and amides with alcohols, commonly known as the borrowing hydrogen or hydrogen autotransfer reactions and the methodology, is a compara- tively green and atom-economic method for the synthesis of the useful amine and amide derivatives. Recently, transition metal-catalyzed aerobic dehydrative N-alkylation method has also attracted much attention, for the reactions can be readily conducted under milder and simpler conditions by using the more stable metal catalysts under the air atmosphere. In this re- view, we summarize the recent advances of transition metal-catalyzed aerobic dehydrative C--N and C=N bond forming reactions of alcohols with amines and amides for the synthesis of the amine and amide derivatives and imines, as well as those of the related aerobic dehydrative C-alkylation reactions. Mechanisms of the above reactions are also discussed.
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