BF3·OEt2-catalyzed/mediated alkyne cyclization: a comprehensive review of heterocycle synthesis with mechanistic insights.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Priya Ghosh, Anil K Saikia
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引用次数: 0

Abstract

The quest for efficient and versatile methods for heterocycle synthesis continues to drive innovation in organic chemistry. In this context, the cyclization of alkynes catalyzed or mediated by boron trifluoride diethyl etherate (BF3·OEt2) has emerged as a powerful and widely applicable strategy. This review provides a comprehensive and authoritative overview of BF3·OEt2-catalyzed/mediated alkyne cyclization reactions, covering the scope, mechanisms, and applications of these processes. We discuss the synthesis of a diverse range of heterocyclic compounds, including dihydropyrans, quinolines, dehydropiperidines, oxindoles and others, and highlight the unique advantages of BF3·OEt2 as a catalyst/mediator. Recent advances, challenges, and future directions in this rapidly evolving field are also addressed. This review aims to serve as a valuable resource for synthetic chemists, inspiring further research and applications in this exciting area.

BF3-OEt2 催化/介导的炔环化:杂环合成的全面回顾与机理启示。
对高效、多用途杂环合成方法的追求不断推动着有机化学的创新。在此背景下,三氟化硼二乙基醚(BF3-OEt2)催化或介导的炔烃环化已成为一种强大而广泛适用的策略。本综述全面而权威地概述了 BF3-OEt2 催化/介导的炔环化反应,涵盖了这些过程的范围、机理和应用。我们讨论了各种杂环化合物的合成,包括二氢吡喃、喹啉、脱水哌啶、吲哚等,并强调了 BF3-OEt2 作为催化剂/介化剂的独特优势。此外,还讨论了这一快速发展领域的最新进展、挑战和未来方向。本综述旨在为合成化学家提供宝贵的资源,激励他们在这一激动人心的领域开展进一步的研究和应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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