Gil-Negrete Jose M, Hevia Eva
Department für Chemie und Biochemie, Universität Bern CH3012 Bern Switzerland
Chem Sci. 2020 Oct 16;12(6):1982-1992. doi: 10.1039/d0sc05116k.
Over the past decade s-block metal catalysis has undergone a transformation from being an esoteric curiosity to a well-established and consolidated field towards sustainable synthesis. Earth-abundant metals such as Ca, Mg, and Al have shown eye-opening catalytic performances in key catalytic processes such as hydrosilylation, hydroamination or alkene polymerization. In parallel to these studies, s-block mixed-metal reagents have also been attracting widespread interest from scientists. These bimetallic reagents effect many cornerstone organic transformations, often providing enhanced reactivities and better chemo- and regioselectivities than conventional monometallic reagents. Despite a significant number of synthetic advances to date, most efforts have focused primarily on stoichiometric transformations. Merging these two exciting areas of research, this Perspective Article provides an overview on the emerging concept of s/p-block cooperative catalysis. Showcasing recent contributions from several research groups across the world, the untapped potential that these systems can offer in catalytic transformations is discussed with special emphasis placed on how synergistic effects can operate and the special roles played by each metal in these transformations. Advancing the understanding of the ground rules of s-block cooperative catalysis, the application of these bimetalic systems in a critical selection of catalytic transformations encompassing hydroamination, cyclisation, hydroboration to C-C bond forming processes are presented as well as their uses in important polymerization reactions.
在过去十年中,s 区金属催化已从一种神秘的新奇事物转变为一个成熟且稳固的可持续合成领域。诸如钙、镁和铝等地球上储量丰富的金属,在硅氢化、氢胺化或烯烃聚合等关键催化过程中展现出了令人瞩目的催化性能。与这些研究并行的是,s 区混合金属试剂也一直吸引着科学家们的广泛关注。这些双金属试剂能实现许多基础有机转化反应,与传统单金属试剂相比,它们常常具有更高的反应活性以及更好的化学和区域选择性。尽管迄今为止已有大量的合成进展,但大多数工作主要集中在化学计量转化方面。结合这两个令人兴奋的研究领域,这篇观点文章概述了 s/p 区协同催化这一新兴概念。通过展示来自世界各地多个研究小组的最新贡献,讨论了这些体系在催化转化中尚未开发的潜力,特别强调了协同效应如何发挥作用以及每种金属在这些转化中所起的特殊作用。为了增进对 s 区协同催化基本规则的理解,还介绍了这些双金属体系在包括氢胺化、环化、硼氢化到碳 - 碳键形成过程等关键催化转化反应中的应用,以及它们在重要聚合反应中的用途。