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空气和水分稳定的两性分子:合成中的通用试剂。

Air- and moisture-stable amphoteric molecules: enabling reagents in synthesis.

机构信息

Davenport Research Laboratories, Department of Chemistry, University of Toronto , 80 St. George Street, Toronto M5S 3H6, Canada.

出版信息

Acc Chem Res. 2014 Apr 15;47(4):1029-40. doi: 10.1021/ar400210c. Epub 2014 Feb 4.

Abstract

Researchers continue to develop chemoselective synthesis strategies with the goal of rapidly assembling complex molecules. As one appealing approach, chemists are searching for new building blocks that include multiple functional groups with orthogonal chemical reactivity. Amphoteric molecules that possess nucleophilic and electrophilic sites offer a versatile platform for the development of chemoselective transformations. As part of a program focused on new methods of synthesis, we have been developing this type of reagents. This Account highlights examples of amphoteric molecules developed by our lab since 2006. We have prepared and evaluated aziridine aldehydes, a class of stable unprotected α-amino aldehydes. Structurally, aziridine aldehydes include both a nucleophilic amine nitrogen and an electrophilic aldehyde carbon over the span of three atoms. Under ambient conditions, these compounds exist as homochiral dimers with an aziridine-fused five-membered cyclic hemiaminal structure. We have investigated chemoselective reactions of aziridine aldehydes that involve both the aziridine and aldehyde functionalities. These transformations have produced a variety of densely functionalized nitrogen-containing compounds, including amino aldehydes, 1,2-diamines, reduced hydantoins, C-vinyl or alkynyl aziridines, and macrocyclic peptides. We have also developed air- and moisture-stable α-boryl aldehydes, another class of molecules that are kinetically amphoteric. The α-boryl aldehydes contain a tetracoordinated N-methyliminodiacetyl (MIDA) boryl substituent, which stabilizes the α-metalloid carbonyl system and prevents isomerization to its O-bond enolate form. Primarily taking advantage of chemoselective transformations at the aldehyde functionality, these α-boryl aldehydes have allowed us to synthesize a series of new functionalized boron-containing compounds that are difficult or impossible to prepare using established protocols, such as α-borylcarboxylic acids, boryl alcohols, enol ethers, and enamides. Using α-borylcarboxylic acids as starting materials, we have also prepared several new amphoteric borylated reagents, such as α-boryl isocyanates, isocyanides, and acylboronates. These compounds are versatile building blocks in their own right, enabling the rapid synthesis of other boron-containing molecules.

摘要

研究人员继续开发化学选择性合成策略,旨在快速组装复杂分子。化学家正在寻找新的砌块,这些砌块包含具有正交化学反应性的多个官能团,这是一种很有吸引力的方法。具有亲核和亲电位点的两性分子为开发化学选择性转化提供了一个多功能平台。作为专注于新合成方法的计划的一部分,我们一直在开发这种类型的试剂。本账目重点介绍了我们实验室自 2006 年以来开发的两性分子的实例。我们已经制备和评估了吖嗪醛,这是一类稳定的未保护的α-氨基醛。从结构上看,吖嗪醛在三个原子的跨度内包含亲核胺氮和亲电醛碳。在环境条件下,这些化合物以手性二聚体的形式存在,具有吖嗪稠合的五元环状半亚胺结构。我们已经研究了涉及吖嗪醛的吖嗪和醛官能团的化学选择性反应。这些转化产生了各种高度官能化的含氮化合物,包括氨基醛、1,2-二胺、还原的海因、C-乙烯基或炔基吖啶和大环肽。我们还开发了空气和水分稳定的α-硼基醛,这是另一类动力学两性分子。α-硼基醛含有四配位的 N-甲基亚氨基二乙酸基(MIDA)硼基取代基,它稳定了α-类金属羰基系统并防止其异构化为 O-键烯醇式。主要利用醛官能团的化学选择性转化,这些α-硼基醛使我们能够合成一系列新的功能化含硼化合物,这些化合物使用既定的方案难以或不可能制备,例如α-硼基羧酸、硼醇、烯醇醚和烯酰胺。使用α-硼基羧酸作为起始材料,我们还制备了几种新的两性硼化试剂,例如α-硼基异氰酸酯、异氰化物和酰基硼酸酯。这些化合物本身就是多功能的构建块,能够快速合成其他含硼分子。

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