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[卡宾镁化合物的化学性质及其在有机合成中的应用]

[Exploitation of the chemistry of magnesium carbenoids and their use in organic synthesis].

作者信息

Satoh Tsuyoshi

机构信息

Graduate School of Chemical Sciences and Technology, Tokyo University of Science, Tokyo, Japan.

出版信息

Yakugaku Zasshi. 2009 Sep;129(9):1013-23. doi: 10.1248/yakushi.129.1013.

DOI:10.1248/yakushi.129.1013
PMID:19721376
Abstract

Synthetic organic chemistry is a base of medicinal chemistry and the exploitation of new methods for carbon-carbon bond formation is of most importance in synthetic organic chemistry. Carbenes and carbenoids have long been known to be highly reactive carbon species that show a variety of unique reactivity. However, those reactive species are not fully used in organic synthesis. The reasons are as follows: one is the precursors for the generation of carbenes and carbenoids are quite limited and the other is that the reactivity of the species is too high to control. In order to solve the problem mentioned above, we used alpha-haloalkyl (or alkenyl) aryl sulfoxides as the precursors and used sulfoxide-magnesium exchange reaction for generation of much mild magnesium carbenoids. alpha-Haloalkyl (or alkenyl) aryl sulfoxides are quite easily synthesized in high overall yields. Magnesium carbenoids, cyclopropylmagnesium carbenoids, cyclobutylmagnesium carbenoids, magnesium beta-oxido carbenoids, and magnesium alkylidene carbenoids are generated at low temperature from the corresponding sulfoxides with a Grignard reagent in quantitative yields. They were found to be stable usually at below -60 degrees C for at least 30 min. The each magnesium carbenoids have their own unique reactivities and we could find many unprecedented reactions from these reactive species. Recent results for the developments of new synthetic methods based on the chemistry of magnesium carbenoids are described.

摘要

合成有机化学是药物化学的基础,开发新的碳 - 碳键形成方法在合成有机化学中至关重要。长期以来,人们已知卡宾和类卡宾是具有高反应活性的碳物种,表现出各种独特的反应性。然而,这些活性物种在有机合成中并未得到充分利用。原因如下:一是用于生成卡宾和类卡宾的前体相当有限,另一个是这些物种的反应性过高难以控制。为了解决上述问题,我们使用α - 卤代烷基(或烯基)芳基亚砜作为前体,并利用亚砜 - 镁交换反应生成温和得多的镁类卡宾。α - 卤代烷基(或烯基)芳基亚砜很容易以高总收率合成。镁类卡宾、环丙基镁类卡宾、环丁基镁类卡宾、β - 氧化镁类卡宾和亚烷基镁类卡宾在低温下由相应的亚砜与格氏试剂定量生成。发现它们通常在低于 - 60℃时稳定至少30分钟。每种镁类卡宾都有其独特的反应性,我们可以从这些活性物种中发现许多前所未有的反应。本文描述了基于镁类卡宾化学开发新合成方法的最新成果。

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