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负载铼的二氧化钛:一种使用氢气和一氧化碳对羧酸衍生物进行氢化以及对胺进行N-甲基化的高度通用且具有化学选择性的催化剂。

Rhenium-Loaded TiO : A Highly Versatile and Chemoselective Catalyst for the Hydrogenation of Carboxylic Acid Derivatives and the N-Methylation of Amines Using H and CO.

作者信息

Toyao Takashi, Siddiki S M A H, Morita Yoshitsugu, Kamachi Takashi, Touchy Abeda S, Onodera Wataru, Kon Kenichi, Furukawa Shinya, Ariga Hiroko, Asakura Kiyotaka, Yoshizawa Kazunari, Shimizu Ken-Ichi

机构信息

Institute for Catalysis, Hokkaido University, N-21, W-10, Sapporo, 001-0021, Japan.

Elements Strategy Initiative for Catalysis and Batteries, Kyoto University, Katsura, Kyoto, 615-8520, Japan.

出版信息

Chemistry. 2017 Oct 20;23(59):14848-14859. doi: 10.1002/chem.201702801. Epub 2017 Sep 26.

Abstract

Herein, we report a heterogeneous TiO -supported Re catalyst (Re/TiO ) that promotes various selective hydrogenation reactions, which includes the hydrogenation of esters to alcohols, the hydrogenation of amides to amines, and the N-methylation of amines, by using H and CO . Initially, Re/TiO was evaluated in the context of the selective hydrogenation of 3-phenylpropionic acid methyl ester to afford 3-phenylpropanol (pH2 =5 MPa, T=180 °C), which revealed a superior performance over other catalysts that we tested in this study. In contrast to other typical heterogeneous catalysts, hydrogenation reactions with Re/TiO did not produce dearomatized byproducts. DFT studies suggested that the high selectivity for the formation of alcohols in favor of the hydrogenation of aromatic rings is ascribed to the higher affinity of Re towards the COOCH group than to the benzene ring. Moreover, Re/TiO showed a wide substrate scope for the hydrogenation reaction (19 examples). Subsequently, this Re/TiO catalyst was applied to the hydrogenation of amides, the N-methylation of amines, and the N-alkylation of amines with carboxylic acids or esters.

摘要

在此,我们报道了一种负载在TiO上的多相Re催化剂(Re/TiO),该催化剂通过使用H和CO促进各种选择性氢化反应,包括酯加氢生成醇、酰胺加氢生成胺以及胺的N-甲基化反应。最初,在将3-苯基丙酸甲酯选择性氢化为3-苯基丙醇(pH2 = 5 MPa,T = 180 °C)的反应中对Re/TiO进行了评估,结果表明其性能优于我们在本研究中测试的其他催化剂。与其他典型的多相催化剂不同,Re/TiO催化的氢化反应不会产生脱芳构化副产物。密度泛函理论(DFT)研究表明,在有利于芳环氢化的情况下生成醇的高选择性归因于Re对COOCH基团的亲和力高于对苯环的亲和力。此外,Re/TiO在氢化反应中显示出广泛的底物范围(19个实例)。随后,这种Re/TiO催化剂被应用于酰胺的氢化、胺的N-甲基化以及胺与羧酸或酯的N-烷基化反应。

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