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相关概念视频

Carbocations02:10

Carbocations

12.8K
Carbocations are one of the reaction intermediates formed during several nucleophilic substitutions or elimination reactions. A carbocation is an electron-deficient species with the central carbon atom having six electrons and three bonded atoms. The central carbon in a carbocation is sp2 hybridized with trigonal planar geometry. It has an empty p orbital perpendicular to the plane of the structure that can accept electrons. Thus, carbocations act as strong electrophiles and may react with any...
12.8K
Regioselectivity and Stereochemistry of Acid-Catalyzed Hydration02:34

Regioselectivity and Stereochemistry of Acid-Catalyzed Hydration

9.2K
The rate of acid-catalyzed hydration of alkenes depends on the alkene's structure, as the presence of alkyl substituents at the double bond can significantly influence the rate.
9.2K
Regioselectivity of Electrophilic Additions to Alkenes: Markovnikov's Rule02:17

Regioselectivity of Electrophilic Additions to Alkenes: Markovnikov's Rule

15.7K
If a set of reactants can yield multiple constitutional isomers, but one of the isomers is obtained as the major product, the reaction is said to be regioselective. In such reactions, bond formation or breaking is favored at one reaction site over others.
The hydrohalogenation of an unsymmetrical alkene can yield two haloalkane products, depending on which vinylic carbon takes up the halogen. However, one product usually predominates, where hydrogen adds to the vinylic carbon bearing the...
15.7K
SN2 Reaction: Transition State02:26

SN2 Reaction: Transition State

11.3K
An SN2 reaction of an alkyl halide is a single-step process in which bond formation between the nucleophile and the substrate and bond breaking between the substrate and the halide occurs simultaneously through a transition state without forming an intermediate.
When the nucleophile approaches the electrophilic carbon with its lone pairs, the halide acts as a leaving group and moves away with the electron-pair bonded to the carbon. Dotted partial bonds represent the bonds being formed or broken...
11.3K
SN1 Reaction: Stereochemistry02:15

SN1 Reaction: Stereochemistry

9.6K
This lesson provides an in-depth discussion of the stereochemical outcomes in an SN1 reaction.
In the first step of an SN1 reaction, the bond between the electrophilic carbon and the leaving group ionizes to generate the carbocation intermediate. The second step of the mechanism is the nucleophilic attack.
In the formed carbocation, the positively charged carbon is sp2 hybridized with a trigonal planar geometry. As all the three substituents lie on the same plane, a plane of symmetry for the...
9.6K
Reactions of α-Halocarbonyl Compounds: Nucleophilic Substitution01:17

Reactions of α-Halocarbonyl Compounds: Nucleophilic Substitution

3.7K
Nucleophilic substitution in α-halocarbonyl compounds can be achieved via an SN2 pathway. The reaction in α-haloketones is generally carried out with less basic nucleophiles. The use of strong basic nucleophiles leads to the generation of α-haloenolate ions, which often participate in other side reactions.
3.7K

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相关实验视频

Updated: Nov 23, 2025

Versatile CO2 Transformations into Complex Products: A One-pot Two-step Strategy
07:36

Versatile CO2 Transformations into Complex Products: A One-pot Two-step Strategy

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在碳化反应中对迁移能力的动态影响

Zhitao Feng1, Dean J Tantillo1

  • 1Department of Chemistry, University of California, Davis, One Shields Avenue, Davis, California 95616, United States.

Journal of the American Chemical Society
|January 5, 2021
PubMed
概括

碳酸重排反应在化学中至关重要. 动态效应,而不仅仅是静态因素,显著影响了碳酸的迁移,影响了合成和生物合成途径.

科学领域:

  • 有机化学
  • 计算化学

背景情况:

  • 碳酸重组是有机合成和生物合成的基础.
  • 了解迁移能力对于预测反应结果至关重要.

研究的目的:

  • 开发一种考虑到动态效应的内在迁移能力的尺度.
  • 在模型碳酸系统中调查竞争的迁移事件.

主要方法:

  • 使用上坡和下坡的分子动力学 (AIMD) 模拟.
  • 分析了潜在的能量表面地形.
  • 运用了变量过渡状态理论计算.

主要成果:

  • 确定了非统计动态效应在迁徙能力中的重要作用.
  • 证明了超越静态偏差的动态因素对于理解碳酸的行为至关重要.

结论:

  • 迁移能力受到超越传统的硬体和电子因素的动态影响.
  • 像AIMD这样的计算方法为反应机制提供了关键的洞察力.

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Isolating Free Carbenes, their Mixed Dimers and Organic Radicals
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Highly Stereoselective Synthesis of 1,6-Ketoesters Mediated by Ionic Liquids: A Three-component Reaction Enabling Rapid Access to a New Class of Low Molecular Weight Gelators

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Highly Stereoselective Synthesis of 1,6-Ketoesters Mediated by Ionic Liquids: A Three-component Reaction Enabling Rapid Access to a New Class of Low Molecular Weight Gelators

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