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自由基布鲁克重排反应:过去、现在与未来。

Radical Brook rearrangement: past, present, and future.

作者信息

Zhang Yunxiao, Zhou Gang, Liu Shanshan, Shen Xiao

机构信息

The Institute for Advanced Studies, Engineering Research Center of Organosilicon Compounds & Materials, Ministry of Education, Wuhan University, 299 Bayi Road, Wuhan, 430072, China.

出版信息

Chem Soc Rev. 2025 Feb 17;54(4):1870-1904. doi: 10.1039/d4cs01275e.

Abstract

The Brook rearrangement has emerged as one of the most pivotal transformations in organic chemistry, with broad applications spanning organic synthesis, drug design, and materials science. Since its discovery in the 1950s, the anion-mediated Brook rearrangement has been extensively studied, laying the groundwork for the development of numerous innovative reactions. In contrast, the radical Brook rearrangement has garnered comparatively less attention, primarily due to the challenges associated with the controlled generation of alkoxyl radicals under mild conditions. However, recent advancements in visible-light catalysis and transition-metal catalysis have positioned the radical Brook rearrangement as a promising alternative synthetic strategy in organic synthesis. Despite these developments, significant limitations and challenges remain, warranting further investigation. This review provides an overview of the radical Brook rearrangement, tracing its development from past to present, and offers perspectives on future directions in the field to inspire the creation of novel synthetic tools based on this transformation.

摘要

布鲁克重排反应已成为有机化学中最关键的转化反应之一,在有机合成、药物设计和材料科学等领域有着广泛应用。自20世纪50年代被发现以来,阴离子介导的布鲁克重排反应得到了广泛研究,为众多创新反应的发展奠定了基础。相比之下,自由基布鲁克重排反应受到的关注相对较少,主要是因为在温和条件下可控地生成烷氧基自由基存在挑战。然而,可见光催化和过渡金属催化方面的最新进展使自由基布鲁克重排反应成为有机合成中一种有前景的替代合成策略。尽管有这些进展,但仍存在重大限制和挑战,值得进一步研究。本综述概述了自由基布鲁克重排反应,追溯其从过去到现在的发展历程,并对该领域的未来方向提出了展望,以激发基于这一转化反应开发新型合成工具。

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