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N-杂芳烃的合成及 N-杂环化合物的催化脱氢反应的最新进展

Recent advances in the synthesis of N-heteroarenes catalytic dehydrogenation of N-heterocycles.

机构信息

Department of Chemistry, Laboratory of Catalysis and Organic Synthesis, Indian Institute of Technology Roorkee, Roorkee-247667, Uttarakhand, India.

出版信息

Chem Commun (Camb). 2021 Dec 7;57(97):13042-13058. doi: 10.1039/d1cc04919d.

Abstract

Bio-active molecules having N-heteroarene core are widely used for numerous medicinal applications and as lifesaving drugs. In this direction, dehydrogenation of partially saturated aromatic N-heterocycles shows utmost importance for the synthesis of heterocycles. This feature article highlights the recent advances, from 2009 to April 2021, on the dehydrogenation of N-heteroaromatics. Notable features considering the development of newer catalysis for dehydrogenations are: (i) approaches based on precious metal catalysis, (ii) newer strategies and catalyst development technology using non-precious metal-catalysts for N-heterocycles having one or more heteroatoms, (iii) Synthesis of five or six-membered N-heterocycles using photocatalysis, electrocatalytic, and organo-catalytic approaches using different homogeneous and heterogeneous conditions' (iv) metal free (base and acid-promoted) dehydrogenation along with I, -hydroxyphthalimide (NHPI) and bio catalyzed miscellaneous examples have also been discussed, (v) mechanistic studies for various dehydrogenation reactions and (vi) synthetic applications of various bio-active molecules including post-drug derivatization are discussed.

摘要

具有 N-杂芳环核心的生物活性分子广泛用于许多医学应用和救生药物。在这方面,部分饱和芳香族 N-杂环的脱氢对于杂环的合成至关重要。本文重点介绍了 2009 年至 2021 年 4 月期间 N-杂芳环脱氢的最新进展。在开发新的脱氢催化方面的显著特点包括:(i)基于贵金属催化的方法,(ii)使用非贵金属催化剂开发具有一个或多个杂原子的 N-杂环的新策略和催化剂开发技术,(iii)使用不同的均相和多相条件的光催化、电催化和有机催化方法合成五元和六元 N-杂环,(iv)无金属(碱和酸促进)脱氢以及 I、-羟基邻苯二甲酰亚胺(NHPI)和生物催化的各种例子也进行了讨论,(v)各种脱氢反应的机理研究,以及(vi)各种生物活性分子的合成应用,包括药物后修饰。

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