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菲烯基-钌协同作用实现伯胺到酰胺的有效催化转化。

Phenalenyl-ruthenium synergism for effectual catalytic transformations of primary amines to amides.

作者信息

Bandopadhyay Nilaj, Paramanik Krishnendu, Sarkar Gayetri, Roy Suvojit, Panda Subhra Jyoti, Purohit Chandra Shekhar, Biswas Bhaskar, Das Hari Sankar

机构信息

Department of Chemistry, University of North Bengal, Darjeeling 734013, India.

Department of Chemical Sciences, National Institute of Science Education and Research, Bhubaneswar, Orissa-751005, India.

出版信息

Dalton Trans. 2024 Aug 20;53(33):13795-13804. doi: 10.1039/d4dt01760a.

DOI:10.1039/d4dt01760a
PMID:39105500
Abstract

The synthesis of amides holds great promise owing to their impeccable contributions as building blocks for highly valued functional derivatives. Herein, we disclose the design, synthesis and crystal structure of a mixed-ligand ruthenium(II) complex, [Ru(η-Cym)(O,O-PLY)Cl], (1) where Cym = 1-isopropyl-4-methyl-benzene and O,O-PLY = deprotonated form of 9-hydroxy phenalenone (HO,O-PLY). The complex catalyzes the aerobic oxidation of various primary amines (RCHNH) to value-added amides (RCONH) with excellent selectivity and efficiency under relatively mild conditions with common organic functional group tolerance. Structural, electrochemical, spectroscopic, and computational studies substantiate that the synergism between the redox-active ruthenium and π-Lewis acidic PLY moieties facilitate the catalytic oxidation of amines to amides. Additionally, the isolation and characterization of key intermediates during catalysis confirm two successive dehydrogenation steps leading to nitrile, which subsequently transform to the desired amide through hydration. The present synthetic approach is also extended to substitution-dependent tuning at PLY to tune the electronic nature of 1 and to assess substituent-mediated catalytic performance. The effect of substitution at the PLY moiety (5 position) leads to structural isomers, which were further evaluated for the catalytic transformations of amine to amides under similar reaction conditions.

摘要

酰胺的合成前景广阔,因为它们作为高价值功能衍生物的构建单元有着无可挑剔的贡献。在此,我们披露了一种混合配体钌(II)配合物[Ru(η-Cym)(O,O-PLY)Cl](1)的设计、合成及晶体结构,其中Cym = 1-异丙基-4-甲基苯,O,O-PLY = 9-羟基菲醌(HO,O-PLY)的去质子化形式。该配合物在相对温和的条件下,对常见有机官能团具有耐受性,能以优异的选择性和效率催化各种伯胺(RCHNH)有氧氧化为高附加值的酰胺(RCONH)。结构、电化学、光谱和计算研究证实,氧化还原活性钌与π-路易斯酸性PLY部分之间的协同作用促进了胺催化氧化为酰胺。此外,催化过程中关键中间体的分离和表征证实了导致腈的两个连续脱氢步骤,腈随后通过水合转化为所需的酰胺。目前的合成方法还扩展到对PLY进行取代依赖性调谐,以调节配合物1的电子性质,并评估取代基介导的催化性能。PLY部分(5位)的取代效应导致结构异构体,在类似反应条件下对其胺催化转化为酰胺的性能进行了进一步评估。

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