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Recent advances in iron(III) chloride catalyzed synthesis of heterocycles

机译:铁(III)氯化铁催化合成杂环的最新进展

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摘要

Heterocyclic compounds particularly five, six and seven membered ring containing heterocycles are the most abundant which constitute a staggeringly diverse and important class of molecules that occur ubiquitously in a variety of synthetic drugs, bioactive natural products, pharmaceuticals and agrochemicals. Owing to the glorious past and impressive present of the biologically active heterocyclic scaffolds, these skeletons have long been a subject of immense interest. Hence, substantial efforts have been made to the development of new and innovative synthetic strategies for the synthesis of these heterocycles involving use of different metal catalysts, organic and inorganic reagents etc. Among the different types of metal catalysts used, iron catalysts are one of the cheap and easily available. In recent time, several new and innovative iron(III) chloride catalyzed synthesis of heterocycles with structural diversity are coming in the forefront of the literature by the scientific community. This review highlights the advancements made so far by iron(III) chloride for the synthesis of different assemblies of small heterocycles covering the year 2014-2018. (C) 2019 Elsevier Ltd. All rights reserved.
机译:杂环化合物特别是含有杂环的五个,六个和七元环是最丰富的,其构成着一种令人惊讶的多样化和重要的分子,这些分子在各种合成药物,生物活性天然产物,药物和农用化学品中出现。由于过去的过去和令人印象深刻的生物活性杂环支架,这些骨骼长期以来一直是巨大兴趣的主题。因此,已经对新的和创新合成策略进行了大量努力,用于合成涉及使用不同金属催化剂,有机和无机试剂等的这些杂环的合成。在所用的不同类型的金属催化剂中,铁催化剂是其中一种便宜且轻松可用。近来,几种新的和创新的铁(III)氯化物催化合成具有结构多样性的杂环,是由科学界的最前沿。本综述强调了迄今为止氯化铁(III)氯化物的进步,用于涵盖2014 - 2018年的小杂交的不同组装。 (c)2019 Elsevier Ltd.保留所有权利。

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