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相关概念视频

Radical Anti-Markovnikov Addition to Alkenes: Overview01:25

Radical Anti-Markovnikov Addition to Alkenes: Overview

4.0K
The addition of hydrogen bromide to alkenes in the presence of hydroperoxides or peroxides proceeds via an anti-Markovnikov pathway and yields alkyl bromides.
4.0K
Radical Anti-Markovnikov Addition to Alkenes: Mechanism01:17

Radical Anti-Markovnikov Addition to Alkenes: Mechanism

4.6K
The reaction of hydrogen bromide with alkenes in the presence of hydroperoxides or peroxides proceeds via anti-Markovnikov addition. The radical chain reaction comprises initiation, propagation, and termination steps.
The mechanism starts with chain initiation, which involves two steps. In the first chain initiation step, a weak peroxide bond is homolytically cleaved upon mild heating to form two alkoxy radicals. In the second initiation step, a hydrogen atom is abstracted by the alkoxy...
4.6K
α-Bromination of Carboxylic Acids: Hell–Volhard–Zelinski Reaction01:15

α-Bromination of Carboxylic Acids: Hell–Volhard–Zelinski Reaction

3.7K
The method to achieve α-brominated carboxylic acids using a mixture of phosphorus tribromide and bromine is known as the Hell–Volhard–Zelinski reaction. The reaction is catalyzed by phosphorus tribromide, which can be used directly or produced in situ from red phosphorus and bromine. The mechanism comprises PBr3 catalyzed conversion of acid to acid bromide and hydrogen bromide. The acid bromide enolizes to its enol form in the presence of HBr. The nucleophilic enol attacks the...
3.7K
Radical Substitution: Allylic Bromination01:27

Radical Substitution: Allylic Bromination

6.4K
In organic synthesis, the formation of products can be altered by changing the reaction conditions. For example, a dibromo addition product is formed when propene is treated with bromine at room temperature. In contrast, propene undergoes allylic substitution in non-polar solvents at high temperatures to give 3-bromopropene. In order to avoid the addition reaction, the bromine concentration must be kept as low as possible throughout the reaction. This can be achieved using N-bromosuccinimide...
6.4K
Regioselectivity of Electrophilic Additions-Peroxide Effect02:35

Regioselectivity of Electrophilic Additions-Peroxide Effect

10.1K
In the presence of organic peroxides, the addition of hydrogen bromide to an alkene yields the isomer that is not predicted by Markovnikov’s rule. For example, the addition of hydrogen bromide to 2-methylpropene in the presence of peroxides gives 1-bromo-2-methylpropane. This addition reaction proceeds via a free radical mechanism, which reverses the regioselectivity. The free radical reaction mechanism involves three stages: initiation, propagation, and termination.
10.1K
Halogenation of Alkenes02:46

Halogenation of Alkenes

18.3K
Halogenation is the addition of chlorine or bromine across the double bond in an alkene to yield a vicinal dihalide. The reaction occurs in the presence of inert and non-nucleophilic solvents, such as methylene chloride, chloroform, or carbon tetrachloride.
Consider the bromination of cyclopentene. Molecular bromine is polarized in the proximity of the π electrons of cyclopentene. An electrophilic bromine atom adds across the double bond, forming a cyclic bromonium ion intermediate.
18.3K

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Updated: Jan 9, 2026

A Two-Step Protocol for Umpolung Functionalization of Ketones Via Enolonium Species
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A Two-Step Protocol for Umpolung Functionalization of Ketones Via Enolonium Species

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使用α-Bromocarbonyl化合物的有机光氧催化基功能化反应.

Yasunori Toda1, Koyo Ono1, Ryunosuke Fujimaki1

  • 1Department of Materials Chemistry, Faculty of Engineering, Shinshu University, 4-17-1 Wakasato, Nagano 380-8553, Japan.

Organic letters
|December 3, 2025
PubMed
概括

可见光的有机光氧催化使得基酸与α-碳化合物的碳化成为可能. 这种方法为C-H功能化产生碳基,提供了一种新的合成途径.

科学领域:

  • 有机化学 有机化学
  • 催化剂是一种催化剂.
  • 摄影化学的使用.

背景情况:

  • 碳酸乳化是有机合成中的一个关键反应.
  • 开发高效的催化方法用于碳酸乳酸化是一个持续的挑战.
  • 可见光有机光氧催化为化学转化提供了一种可持续的方法.

研究的目的:

  • 报道了第一个可见光有机光氧催化酸与α-碳酸化合物的甲酸脱氧化.
  • 探索该协议在C-H功能化反应中的应用.
  • 为了阐明反应机制.

主要方法:

  • 可见光照射辐射的可见光照射辐射.
  • 使用氧化光催化剂的器官光电氧催化剂.
  • 与酸和α-碳酸化合物的反应.
  • 1,1-二乙烯和3-甲基二醇的C-H功能化.
  • 激光和光火试验的实验.

主要成果:

  • 在可见光下,成功地用α-碳化合物对基酸进行了碳酸化.
  • 从α-bromocarbonyl化合物中产生以碳为中心的基因.
  • 该协议应用于具有挑战性的基板的C-H功能化.

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Efficient Synthesis of All-Carbon Quaternary Centers via the Conjugate Addition of Functionalized Monoorganozinc Bromides
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  • 通过机理学研究支持拟议的催化循环.
  • 结论:

    • 已经开发出一种新且高效的可见光有机光氧催化碳素活性化反应.
    • 该方法为合成有价值的有机化合物提供了一条新的途径.
    • 这项研究提供了对光氧催化基反应的机制的见解.