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New Approaches Towards the Asymmetric Allylation of the Formyl and Imino Groups Via Strained Silane Lewis Acids

机译:通过应变硅烷路易斯酸对甲酰基和氨基进行不对称烯丙基化的新方法

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摘要

This dissertation presents new approaches towards the asymmetric allylation of the imino and formyl functionalities by using strained silanes as Lewis acids. Here in the Laboratory of Professor James L. Leighton, chiral homoallylic alcohols and amines are considered privileged products given their important role as building blocks in natural product synthesis. The new approaches reported herein are focused on expanding the scope of imine allylation reactions and gaining full synthetic utility of the corresponding homoallylic amine products by means of economic and user-friendly protocols. In addition, the discovery of a novel catalytic and mild approach to the asymmetric allylation of aldehydes will be the focus of discussion at the end of this works. Chapter 1 will give a brief introduction about general concepts in asymmetric allylation of aldehydes and imines as well as in applications of strained silane Lewis acids in these reactions. Chapter 2 will discuss the development of a novel asymmetric allylation method for N-heteroaryl hydrazones and the N-heteroaryl cleavage from the product to unmask the corresponding free amines. Chapter 3 will carry on these studies into different imine activating groups in search for a more general and user-friendly approach towards both allylation and cleavage protocols. Finally, Chapter 3 will discuss the development of a new methodology in which chiral bismuth (III) complexes can catalyze the asymmetric allylation of aldehydes with achiral strained allylsilanes.
机译:本文通过使用应变硅烷作为路易斯酸,为亚氨基和甲酰基官能团的不对称烯丙基化提供了新方法。在James L. Leighton教授的实验室中,手性均烯丙基醇和胺被认为是特权产品,因为它们在天然产物合成中起重要作用。本文报道的新方法致力于通过经济和用户友好的方案扩大亚胺烯丙基化反应的范围并获得相应的均烯丙基胺产物的完全合成效用。此外,发现一种新颖的催化和温和的方法来催化醛的不对称烯丙基化将是本工作最后讨论的重点。第1章将简要介绍醛和亚胺的不对称烯丙基化的一般概念,以及在这些反应中使用应变硅烷路易斯酸的应用。第2章将讨论N-杂芳基的新的不对称烯丙基化方法的开发以及产物中N-杂芳基的裂解,以揭示相应的游离胺。第3章将对不同的亚胺活化基团进行这些研究,以寻求对烯丙基化和裂解方案均更为通用和用户友好的方法。最后,第3章将讨论一种新方法的开发,在该方法中手性铋(III)配合物可以催化醛与非手性应变烯丙基硅烷的不对称烯丙基化反应。

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