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The remarkable journey of catalysts from stoichiometric to catalytic quantity for allyltrimethylsilane inspired allylation of acetals, ketals, aldehydes and ketones

机译:烯丙基三甲基硅烷的催化剂从化学计量到催化量的惊人旅程激发了乙缩醛,缩酮,醛和酮的烯丙基化

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The Hosomi–Sakurai reaction has received enormous attention since its inception and will continue to do so, owing to its atom-economical carbon–carbon bond forming ability. The remarkable feature of this reaction is the use of simple achiral starting materials which leads to the product having a chiral carbon centre with two active functionalities which serve as the guiding stone towards easy synthesis of natural products/bioactive heterocyclic scaffolds/drug candidates. The journey which started with the use of stoichiometric amounts of catalyst has now reached catalytic quantity and that too with economical and ecological aspects. In this review we have emphasized on this journey with regard to Lewis acids, metal triflates, Br?nsted acids, heterogeneous catalysts and easily available inexpensive catalysts such as iodine. Our objective is to brief the readers with in-depth knowledge on the development and recent trends in the use of novel catalysts so as to provoke research in this fascinating and enormously useful area which will lead to the development of environmentally benign and economically viable protocols to a greater extent.
机译:自开始以来,细森-樱井反应受到了广泛的关注,并且由于其原子经济的碳-碳键形成能力,这种反应将继续下去。该反应的显着特征是使用简单的非手性起始原料,其导致具有手性碳中心的产物具有两个活性官能团,该官能团充当容易合成天然产物/生物活性杂环骨架/候选药物的指南。从使用化学计量的催化剂开始的旅程现在已经达到催化量,并且在经济和生态方面也是如此。在这篇综述中,我们强调了路易斯酸,金属三氟甲磺酸盐,布朗斯台德酸,非均相催化剂和容易获得的廉价催化剂(如碘)的发展历程。我们的目标是向读者简要介绍新型催化剂的使用发展和最新趋势,以便在这个引人入胜且极为有用的领域进行研究,这将导致开发对环境无害且在经济上可行的方案,在更大程度上。

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