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(Ar-tpy)Ru(ACN):一种用于醛酰胺化、烯烃氧化裂解和炔烃氧化的水溶性催化剂。

(Ar-tpy)Ru(ACN): A Water-Soluble Catalyst for Aldehyde Amidation, Olefin Oxo-Scissoring, and Alkyne Oxygenation.

机构信息

Department of Chemistry , University of Calcutta , 92 A. P. C. Road , Kolkata 700009 , India.

School of Technology Management & Engineering , NMIMS , Indore 453112 , India.

出版信息

J Org Chem. 2019 Jul 5;84(13):8468-8480. doi: 10.1021/acs.joc.9b00487. Epub 2019 Jun 19.

Abstract

The synthetic chemists always look for developing new catalysts, sustainable catalysis, and their applications in various organic transformations. Herein, we report a new class of water-soluble complexes, (Ar-tpy)Ru(ACN), utilizing designed terpyridines possessing electron-donating and -withdrawing aromatic residues for tuning the catalytic activity of the Ru(II) complex. These complexes displayed excellent catalytic activity for several oxidative organic transformations including late-stage C-H functionalization of aldehydes with NHOR to valuable primary amides in nonconventional aqueous media with excellent yield. Its diverse catalytic power was established for direct oxo-scissoring of a wide range of alkenes to furnish aldehydes and/or ketones in high yield using a low catalyst loading in the water. Its smart catalytic activity under mild conditions was validated for dioxygenation of alkynes to highly demanding labile synthons, 1,2-diketones, and/or acids. This general and sustainable catalysis was successfully employed on sugar-based substrates to obtain the chiral amides, aldehydes, and labile 1,2-diketones. The catalyst is recovered and reused with a moderate turnover. The proposed mechanistic pathway is supported by isolation of the intermediates and their characterization. This multifaceted sustainable catalysis is a unique tool, especially for late-stage functionalization, to furnish the targeted compounds through frequently used amidation and oxygenation processes in the academia and industry.

摘要

合成化学家一直在寻找开发新型催化剂、可持续催化及其在各种有机转化中的应用。在此,我们报告了一类新的水溶性配合物(Ar-tpy)Ru(ACN),利用设计的具有供电子和吸电子芳基残基的三联吡啶来调节 Ru(II) 配合物的催化活性。这些配合物在几种氧化有机转化中表现出优异的催化活性,包括在非传统水相介质中,用 NHOR 对醛的晚期 C-H 官能化,以高产率得到有价值的伯酰胺。其多样化的催化能力已被确立,可在水中使用低催化剂负载量,直接将各种烯烃氧化切割成醛和/或酮,产率高。其在温和条件下的智能催化活性已通过炔烃的双氧合验证,得到高要求的不稳定合成子、1,2-二酮和/或酸。这种通用和可持续的催化作用已成功应用于糖基底物,以获得手性酰胺、醛和不稳定的 1,2-二酮。催化剂经适度转化后可回收再利用。所提出的机理途径得到了中间体的分离和表征的支持。这种多方面的可持续催化作用是一种独特的工具,特别是对于晚期功能化,可通过学术界和工业界常用的酰胺化和氧化过程来提供目标化合物。

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