铁催化的 N-杂环分子间和分子内环化反应

IF 2 3区 化学 Q2 CHEMISTRY, ORGANIC Journal of Heterocyclic Chemistry Pub Date : 2024-03-26 DOI:10.1002/jhet.4812
Jyoti Kaushik, Sonika Jain, Dharma Kishore, Jaya Dwivedi
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引用次数: 0

摘要

N 型杂环化合物作为药物生产的底物,一直是极具吸引力的药剂。在这篇综述论文中,重点介绍了以铁为催化剂的 N-杂环的环化及其机理途径。本文将为研究人员提供有关采用更环保而非传统方法进行合成的深入知识。本综述充分证明,铁催化剂具有获得四种氧化态的先天能力和内在潜力,而且易于获得、价格低廉、对环境友好,因此一直是化学领域的中流砥柱,是有机合成领域的常青催化剂。这篇综述论文广泛探讨了铁催化的 N-杂环环化,阐明了机理途径,并强调了更环保的合成方法。铁的多功能性、易获得性和环保性巩固了其作为有机合成基石的地位。
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Iron-catalyzed intermolecular and intramolecular cyclization reactions of N-heterocycles

N-Heterocyclic compounds have been appealing pharmacophores in their use as drug production substrates. In this review paper, the cyclization of N-heterocycles, using iron as a catalyst, and their mechanistic pathways have been highlighted and presented comprehensively. This paper will provide researchers with in-depth knowledge of their approach to synthesis by employing a greener way rather than a conventional one. The present review firmly establishes that iron catalysts by their innate ability and inherent potential to acquire the four oxidation states coupled with their easy accessibility, inexpensive, and environment-friendly nature have remained the mainstay in chemistry as the evergreen catalyst in the domain of organic synthesis. This review paper extensively explores iron-catalyzed cyclization of N-heterocycles, elucidating mechanistic pathways and emphasizing greener synthesis methods. Iron's versatility, accessibility, and eco-friendliness solidify its position as a cornerstone in organic synthesis.

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来源期刊
Journal of Heterocyclic Chemistry
Journal of Heterocyclic Chemistry 化学-有机化学
CiteScore
5.20
自引率
4.20%
发文量
177
审稿时长
3.9 months
期刊介绍: The Journal of Heterocyclic Chemistry is interested in publishing research on all aspects of heterocyclic chemistry, especially development and application of efficient synthetic methodologies and strategies for the synthesis of various heterocyclic compounds. In addition, Journal of Heterocyclic Chemistry promotes research in other areas that contribute to heterocyclic synthesis/application, such as synthesis design, reaction techniques, flow chemistry and continuous processing, multiphase catalysis, green chemistry, catalyst immobilization and recycling.
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