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Solid-phase Synthesis of [4.4] Spirocyclic Oximes
Published on: February 6, 2019
通过易斯酸促进的 [2+2] 循环添加进行稳定氧基因的催化不对称合成
Kohsuke Aikawa1, Yūta Hioki, Natsumi Shimizu
1Department of Applied Chemistry, Tokyo Institute of Technology, Tokyo 152-8552, Japan.
Journal of the American Chemical Society
|November 11, 2011
概括
一种新的催化方法使得使用三基酸盐和酸盐能够对稳定的氧乙烯衍生物进行酶选择性合成. 这些性构建块对制药和农业化学品有价值.
科学领域:
- 有机化学 有机化学
- 催化剂是一种催化剂.
- 合成方法论 合成方法论
背景情况:
- 氧乙烯衍生物是重要的结构动机.
- 三甲基化化合物的酶选择性合成仍然是一个挑战.
研究的目的:
- 开发一种高度选和原子经济的 [2 + 2] 循环添加,用于合成稳定的氧乙烯衍生物.
- 建立一种实用的催化方法,用于制造基拉CF(3) 替代化合物.
主要方法:
- 在 [2 + 2] 循环添加反应中使用了二化 (S) -BINAP-Pd 催化剂.
- 采用各种基因和三基酸作为基板.
- 通过X射线分析描述了由此产生的氧乙烯衍生物.
主要成果:
- 实现了第一个稳定的氧乙烯衍生物的enantioselective合成.
- 在氧乙烯衍生物转化为CF(3) 替代化合物的过程中,已证明具有很高的立体选择性.
- 展示了低催化剂负载 (高达0.1mol%) 的催化过程的实用性.
结论:
- 开发的催化系统提供了一条高效的途径,以致于获得基丰富的氧乙烯衍生物.
- 这些氧乙烯衍生物作为药品和农业化学品的多功能性构建块.
- 该方法促进了高立体控制的有价值的CF(3) 替代化合物的合成.
相关概念视频
Cycloaddition Reactions: Overview
Cycloadditions are one of the most valuable and effective synthesis routes to form cyclic compounds. These are concerted pericyclic reactions between two unsaturated compounds resulting in a cyclic product with two new σ bonds formed at the expense of π bonds. The [4 + 2] cycloaddition, known as the Diels–Alder reaction, is the most common. The other example is a [2 + 2] cycloaddition.
Cycloaddition Reactions: MO Requirements for Thermal Activation
Thermal cycloadditions are reactions where the source of activation energy needed to initiate the reaction is provided in the form of heat. A typical example of a thermally-allowed cycloaddition is the Diels–Alder reaction, which is a [4 + 2] cycloaddition. In contrast, a [2 + 2] cycloaddition is thermally forbidden.
Oxidation of Alkenes: Anti Dihydroxylation with Peroxy Acids
Diols are compounds with two hydroxyl groups. In addition to syn dihydroxylation, diols can also be synthesized through the process of anti dihydroxylation. The process involves treating an alkene with a peroxycarboxylic acid to form an epoxide. Epoxides are highly strained three-membered rings with oxygen and two carbons occupying the corners of an equilateral triangle. This step is followed by ring-opening of the epoxide in the presence of an aqueous acid to give a trans diol.
Oxidation of Alkenes: Syn Dihydroxylation with Osmium Tetraoxide
Alkenes are converted to 1,2-diols or glycols through a process called dihydroxylation. It involves the addition of two hydroxyl groups across the double bond with two different stereochemical approaches, namely anti and syn. Dihydroxylation using osmium tetroxide progresses with syn stereochemistry.
Cyclohexenones via Michael Addition and Aldol Condensation: The Robinson Annulation
Robinson annulation is a base-catalyzed reaction for the synthesis of 2-cyclohexenone derivatives from 1,3-dicarbonyl donors (such as cyclic diketones, β-ketoesters, or β-diketones) and α,β-unsaturated carbonyl acceptors. Named after Sir Robert Robinson, who discovered it, this reaction yields a six-membered ring with three new C–C bonds (two σ bonds and one π bond).
Preparation of Epoxides
Overview
Epoxides result from alkene oxidation, which can be achieved by a) air, b) peroxy acids, c) hypochlorous acids, and d) halohydrin cyclization.
Epoxidation with Peroxy Acids
Epoxidation of alkenes via oxidation with peroxy acids involves the conversion of a carbon–carbon double bond to an epoxide using the oxidizing agent meta-chloroperoxybenzoic acid, commonly known as MCPBA. Since the O–O bond of peroxy acids is very weak, the addition of electrophilic oxygen of peroxy acids to...
Epoxides result from alkene oxidation, which can be achieved by a) air, b) peroxy acids, c) hypochlorous acids, and d) halohydrin cyclization.
Epoxidation with Peroxy Acids
Epoxidation of alkenes via oxidation with peroxy acids involves the conversion of a carbon–carbon double bond to an epoxide using the oxidizing agent meta-chloroperoxybenzoic acid, commonly known as MCPBA. Since the O–O bond of peroxy acids is very weak, the addition of electrophilic oxygen of peroxy acids to...

