Fuhua Zhang, Kun Chen, Dr. Xin Min, Dr. Wen Yang, Dr. Miaodong Su, Dr. Zhongzhong Cao
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引用次数: 0
摘要
N- 烷基苯胺是一系列常见的多用途化合物,不仅可用作反应溶剂、酸接受体和有机碱,还可用于合成染料、药品和抗胆碱。其中最具代表性的是 N-甲基和/或 N,N-二甲基苯胺。由于其用途广泛,过去几十年中有关其合成策略的研究成果层出不穷。有关苯胺 N-H 甲基化的研究主要集中在试剂选择、催化剂选择或配体设计方面。不同的过渡金属(如 Ir、Ru、Pd 等)和不同的配体已被用于甲基化协议中。甲醇(CH3OH)、二氧化碳(CO2)、甲醛(HCHO)或碳酸二甲酯((CH3)2CO3)被用作 C 源,氢气(H2)或硅烷被用作 H 源。在这项工作中,我们希望总结合成 N-甲基(包括 N,N-二甲基)苯胺及其衍生物的最新进展。本综述概述了反应物和催化剂,并重点介绍了每项工作的底物范围和拟议的反应机理。
Catalysis-Controlled Selective N-mono or N-di-methylation of Anilines: A Review on Synthesis of N-methyl or N,N-dimethyl anilines
N-alkyl anilines are a series of common and versatile compounds which not only have been used as reaction solvents, acid-accepters, and organic-bases, but also in synthesis of dyes, pharmaceuticals, and anti-colodal. The N-methyl and/or N,N-dimethyl anilines are the most representative ones among these. Due to their widespread uses, numerous works have been reported on synthetic strategies in the past decades. The studies on N−H methylations of anilines mainly focus on selection of reagents, selection of catalysts, or ligands design. Different transition-metals, e. g., Ir, Ru, Pd, and et. al, with different ligands have been used in the methylation protocols. Methanol (CH3OH), carbon dioxide (CO2), formaldehyde (HCHO), or dimethyl carbonate ((CH3)2CO3) was used as C source, and hydrogen (H2) or silanes as H source. In this work, we would like to summarize the latest advances on the synthesis of N-methyl (N,N-dimethyl included) anilines and derivatives. This review provides an overview of reactants and catalyst, as well as an emphasis on the scope of substrates and proposed reaction mechanism for each work.
期刊介绍:
ChemistrySelect is the latest journal from ChemPubSoc Europe and Wiley-VCH. It offers researchers a quality society-owned journal in which to publish their work in all areas of chemistry. Manuscripts are evaluated by active researchers to ensure they add meaningfully to the scientific literature, and those accepted are processed quickly to ensure rapid online publication.