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醇作为可持续资源的钌催化脱氢烷基化和烯丙基化的进展研究。

Progressive study on ruthenium catalysis for de(hydrogenative) alkylation and alkenylation using alcohols as a sustainable source.

机构信息

Department of Chemistry, Indian Institute of Technology, Guwahati Dist. Kamrup, Pin-781039, Assam, India.

出版信息

Org Biomol Chem. 2022 Oct 26;20(41):7998-8030. doi: 10.1039/d2ob01323a.

Abstract

At present, alcohols are considered sustainable starting materials that can be used in organic synthesis for various organic transformations and the preparation of commodity chemicals. Acceptorless dehydrogenation (AD) and borrowing hydrogen (BH) are two important methods for activating alcohols for alkenylation and alkylation. These approaches are sustainable because their process liberates water and in some cases (, AD) molecular hydrogen as clean byproducts. Moreover, this area of research has attracted significant attention in the catalysis community, and various transition metals have been used to explore the same. Herein, in this review, we focus on the development of Ru-based catalyst systems for C-alkylation/alkenylation reactions the AD or BH approach. This review also features a comparative study of the various Ru-catalysts used to optimize the reaction conditions. Furthermore, we extensively cover the outcomes of the mechanistic studies to describe the reaction pathways.

摘要

目前,醇类被认为是可持续的起始材料,可用于有机合成中的各种有机转化和商品化学品的制备。无受体脱氢(AD)和借氢(BH)是两种重要的醇类活化方法,可用于烯丙基化和烷基化反应。这些方法是可持续的,因为它们的过程释放出水,在某些情况下(AD)作为清洁的副产物释放分子氢。此外,该研究领域在催化界引起了广泛关注,并且已经使用各种过渡金属来探索相同的方法。在此综述中,我们专注于开发 Ru 基催化剂体系用于 C-烷基化/烯丙基化反应,即 AD 或 BH 方法。该综述还对用于优化反应条件的各种 Ru 催化剂进行了比较研究。此外,我们广泛涵盖了机理研究的结果,以描述反应途径。

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