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相关概念视频

Reduction of Alkynes to cis-Alkenes: Catalytic Hydrogenation02:24

Reduction of Alkynes to cis-Alkenes: Catalytic Hydrogenation

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Introduction
Like alkenes, alkynes can be reduced to alkanes in the presence of transition metal catalysts such as Pt, Pd, or Ni. The reaction involves two sequential syn additions of hydrogen via a cis-alkene intermediate.
8.8K
Preparation of Alkynes: Alkylation Reaction02:27

Preparation of Alkynes: Alkylation Reaction

11.8K
Introduction
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.
11.8K
Preparation of Alkynes: Dehydrohalogenation02:34

Preparation of Alkynes: Dehydrohalogenation

17.7K
Introduction
Alkynes can be prepared by dehydrohalogenation of vicinal or geminal dihalides in the presence of a strong base like sodium amide in liquid ammonia. The reaction proceeds with the loss of two equivalents of hydrogen halide (HX) via two successive E2 elimination reactions.
17.7K
Radical Substitution: Allylic Bromination01:27

Radical Substitution: Allylic Bromination

6.3K
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...
6.3K
Reduction of Alkenes: Asymmetric Catalytic Hydrogenation02:17

Reduction of Alkenes: Asymmetric Catalytic Hydrogenation

3.8K
Catalytic hydrogenation of alkenes is a transition-metal catalyzed reduction of the double bond using molecular hydrogen to give alkanes. The mode of hydrogen addition follows syn stereochemistry.
The metal catalyst used can be either heterogeneous or homogeneous. When hydrogenation of an alkene generates a chiral center, a pair of enantiomeric products is expected to form. However, an enantiomeric excess of one of the products can be facilitated using an enantioselective reaction or an...
3.8K
Nucleophilic Aromatic Substitution: Elimination–Addition01:11

Nucleophilic Aromatic Substitution: Elimination–Addition

4.9K
Simple aryl halides do not react with nucleophiles. However, nucleophilic aromatic substitutions can be forced under certain conditions, such as high temperatures or strong bases. The mechanism of substitution under such conditions involves the highly unstable and reactive benzyne intermediate. Benzyne contains equivalent carbon centers at both ends of the triple bond, each of which is equally susceptible to nucleophilic attack. This 50–50 distribution of products is...
4.9K

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Facile Preparation of 2Z,4E-Dienamides by the Olefination of Electron-deficient Alkenes with Allyl Acetate
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通过银酸催化方法进行分子间的艾伦功能化

Manuel R Rodríguez1, María Besora2, Francisco Molina1

  • 1Laboratorio de Catálisis Homogénea, Unidad Asociada al CSIC, CIQSO-Centro de Investigación en Quı́mica Sostenible and Departamento de Quı́mica, Universidad de Huelva, 21007 Huelva, Spain.

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|June 28, 2020
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概括

银催化使得有效的分子间酸转移到酸中,从酸中产生酸,从酸中产生酸. 这些产品可以进一步转化为有价值的氨基cyclopropanes.

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科学领域:

  • 有机化学
  • 催化剂
  • 合成方法

背景情况:

  • 金属介导的转移反应对于含化合物的合成至关重要.
  • 艾伦是有机合成中的多功能基质,但它们与转移剂的反应性较少被探索.
  • 开发高效的催化系统将转移到基仍然是一个合成的挑战.

研究的目的:

  • 报告第一个高效的金属介导分子间酸转移到基.
  • 调查替代剂对反应结果的影响.
  • 阐明反应机制并探索产生的产品的合成应用.

主要方法:

  • 使用白银催化剂前体[Tp*,BrAg]2,进行反应.
  • 作为的来源使用了酸.
  • 进行了机制研究以了解反应途径.
  • 探索了阿齐蒂丁和阿齐里丁产品的后续合成转化.

主要成果:

  • 实现了有效的白银催化分子间酸转移到基.
  • 证明了取代剂依赖的产物形成:阿里拉产生了亚丁,而基产生了甲基亚丁.
  • 拟议的机制性途径涉及环胺中间体的阿齐迪丁形成和直接的酸盐添加阿齐迪丁.
  • 展示了合成的亚齐蒂丁和亚齐里丁对进一步转化为氨基cyclopropanes的有用性.

结论:

  • 建立了一种新的白银催化方法,用于将转移到基.
  • 突出了替代剂在指导反应结果中的关键作用.
  • 提供了一种多功能合成途径,以亚齐丁丁,亚齐里丁和氨基cyclopropanes.