不被激活的基的E-选择性激进失能化:从阿利法性基中制备功能化的基醇
Jie Wang1, Xinxin Wu1, Zhu Cao2
1Key Laboratory of Organic Synthesis of Jiangsu Province, College of Chemistry, Chemical Engineering and Materials Science, Soochow University, 199 Ren-Ai Road, Suzhou, Jiangsu, 215123, China.
这项研究引入了一种新的方法来激进地使基的功能丧失,从而产生有价值的基. 该过程实现了高化学和立体选择性,为复杂分子提供了一条实用的途径.
科学领域:
- 有机化学 有机化学
- 合成方法论 合成方法论
- 摄影氧催化剂的催化作用
背景情况:
- 基的激进失能是合成多替代基的关键.
- 在这些反应中实现高化学和立体选择性是具有挑战性的.
研究的目的:
- 开发一种用于基因功能失调的新型光反中性协议.
- 用控制的立体化学方法将基基和基基组纳入基.
主要方法:
- 使用一个涉及功能组迁移,根极交叉和能量转移启用异构的序列.
- 在中性条件下使用光反氧催化剂.
主要成果:
- 成功地将基基和基基组同时结合到各种异形基中.
- 形成具有广泛功能组耐受性的纯E-醇.
- 证明了对具有提供的C-H键的类的耐受性.
结论:
- 开发的协议提供了一种实用和选择性的策略,用于非激活的基因的功能丧失.
- 这种方法提供了高产品多样性和独特的化学和立体选择性.
- 在激素化学和基合成领域取得了进展.
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相关概念视频
Radical Anti-Markovnikov Addition to Alkenes: Overview
Preparation of Alkynes: Alkylation Reaction
Alkylation of terminal alkynes with primary alkyl halides in the presence of a strong base like sodium amide is one of the common methods for the synthesis of longer carbon-chain alkynes. For example, treatment of 1-propyne with sodium amide followed by reaction with ethyl bromide yields 2-pentyne.
Alkynes to Aldehydes and Ketones: Hydroboration-Oxidation
One of the convenient methods for the preparation of aldehydes and ketones is via hydration of alkynes. Hydroboration-oxidation of alkynes is an indirect hydration reaction in which an alkyne is treated with borane followed by oxidation with alkaline peroxide to form an enol that rapidly converts into an aldehyde or a ketone. Terminal alkynes form aldehydes, whereas internal alkynes give ketones as the final product.
Acid-Catalyzed Dehydration of Alcohols to Alkenes
Electrophilic Addition to Alkynes: Halogenation
Halogenation is another class of electrophilic addition reactions where a halogen molecule gets added across a π bond. In alkynes, the presence of two π bonds allows for the addition of two equivalents of halogens (bromine or chlorine). The addition of the first halogen molecule forms a trans-dihaloalkene as the major product and the cis isomer as the minor product. Subsequent addition of the second equivalent yields the tetrahalide.
Preparation of Alcohols via Substitution Reactions
Alcohols can be synthesized from alkyl halides via nucleophilic substitution reactions. The highly polar carbon-halogen bond in the substrate makes halide a good leaving group. The hydroxide ion or water can act as a nucleophile to take the place of halide and form an alcohol. The substitution reactions occur via two different reaction pathways, SN1 or SN2, depending on the nature of carbon attached to the halide.
Primary alcohols are synthesized from primary alkyl halides, and the...
