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有机钠化学作为有机锂试剂的可持续替代物的新前沿。

New Frontiers in Organosodium Chemistry as Sustainable Alternatives to Organolithium Reagents.

作者信息

Anderson David E, Tortajada Andreu, Hevia Eva

机构信息

Department für Chemie und Biochemie, Universität Bern, Freiestrasse 3, 3012, Bern, Switzerland.

出版信息

Angew Chem Int Ed Engl. 2024 Jan 22;63(4):e202313556. doi: 10.1002/anie.202313556. Epub 2023 Oct 24.

Abstract

With their highly reactive respective C-Na and N-Na bonds, organosodium and sodium amide reagents could be viewed as obvious replacements or even superior reagents to the popular, widely utilised organolithiums. However, they have seen very limited applications in synthesis due mainly to poor solubility in common solvents and their limited stability. That notwithstanding in recent years there has been a surge of interest in bringing these sustainable metal reagents into the forefront of organometallics in synthesis. Showcasing the growth in utilisation of organosodium complexes within several areas of synthetic chemistry, this Minireview discusses promising new methods that have been recently reported with the goal of taming these powerful reagents. Special emphasis is placed on coordination and aggregation effects in these reagents which can impart profound changes in their solubility and reactivity. Differences in observed reactivity between more nucleophilic aryl and alkyl sodium reagents and the less nucleophilic but highly basic sodium amides are discussed along with current mechanistic understanding of their reactivities. Overall, this review aims to inspire growth in this exciting field of research to allow for the integration of organosodium complexes within common important synthetic transformations.

摘要

有机钠试剂和氨基钠试剂分别具有高活性的C-Na键和N-Na键,可被视为常用且广泛应用的有机锂试剂的明显替代品,甚至是更优的试剂。然而,它们在合成中的应用非常有限,主要原因是在常见溶剂中的溶解度差以及稳定性有限。尽管如此,近年来人们对将这些可持续的金属试剂引入合成有机金属化学的前沿产生了浓厚兴趣。本综述展示了有机钠配合物在合成化学多个领域的应用增长情况,讨论了最近报道的有前景的新方法,旨在驯服这些强大的试剂。特别强调了这些试剂中的配位和聚集效应,这些效应会使其溶解度和反应性发生深刻变化。讨论了亲核性更强的芳基和烷基钠试剂与亲核性较弱但碱性很强的氨基钠试剂在反应性上的差异,以及目前对它们反应机理的理解。总体而言,本综述旨在激发这一令人兴奋的研究领域的发展,以便将有机钠配合物纳入常见的重要合成转化中。

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