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相关概念视频

Cycloaddition Reactions: Overview01:16

Cycloaddition Reactions: Overview

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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.
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Cycloaddition Reactions: MO Requirements for Thermal Activation01:16

Cycloaddition Reactions: MO Requirements for Thermal Activation

3.5K
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.
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[4+2] Cycloaddition of Conjugated Dienes: Diels–Alder Reaction01:16

[4+2] Cycloaddition of Conjugated Dienes: Diels–Alder Reaction

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The Diels–Alder reaction is an example of a thermal pericyclic reaction between a conjugated diene and an alkene or alkyne, commonly referred to as a dienophile. The reaction involves a concerted movement of six π electrons, four from the diene and two from the dienophile, forming an unsaturated six-membered ring. As a result, these reactions are classified as [4+2] cycloadditions.
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Cycloaddition Reactions: MO Requirements for Photochemical Activation01:12

Cycloaddition Reactions: MO Requirements for Photochemical Activation

2.1K
Some cycloaddition reactions are activated by heat, while others are initiated by light. For example, a [2 + 2] cycloaddition between two ethylene molecules occurs only in the presence of light. It is photochemically allowed but thermally forbidden.
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Electrophilic 1,2- and 1,4-Addition of X2 to 1,3-Butadiene01:14

Electrophilic 1,2- and 1,4-Addition of X2 to 1,3-Butadiene

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Electrophilic addition of halogens to alkenes proceeds via a cyclic halonium ion to form a 1,2-dihalide or a vicinal dihalide.
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Diels–Alder Reaction Forming Bridged Bicyclic Products: Stereochemistry01:29

Diels–Alder Reaction Forming Bridged Bicyclic Products: Stereochemistry

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Diels–Alder reactions between cyclic dienes locked in an s-cis configuration and dienophiles yield bridged bicyclic products.
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相关实验视频

Updated: Jun 27, 2025

Efficient Construction of Drug-like Bispirocyclic Scaffolds Via Organocatalytic Cycloadditions of &#945;-Imino &#947;-Lactones and Alkylidene Pyrazolones
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Efficient Construction of Drug-like Bispirocyclic Scaffolds Via Organocatalytic Cycloadditions of α-Imino γ-Lactones and Alkylidene Pyrazolones

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扭曲的双重债券可以促进逐步 [2 + 2] 循环加法吗?

Renan V Viesser1, Clayton P Donald1, Jeremy A May1

  • 1Department of Chemistry, University of Houston, Houston, Texas 77204, United States.

Organic letters
|April 29, 2024
PubMed
概括

高度扭曲的抗Bredt基具有小的单元-三元能量差距,可能会经历易于 [2 + 2] 循环添加. 计算研究探讨了乙烯,乙, perfluoroethylene 和 cyclooctyne 的反应.

科学领域:

  • 有机化学 有机化学
  • 计算化学计算化学
  • 物理化学 物理化学

背景情况:

  • 抗Bredt基具有紧张的桥头双键.
  • 了解它们的反应性对于合成化学至关重要.

研究的目的:

  • 研究抗Bredt基中 [2 + 2] 循环添加反应的可能性.
  • 识别促进容易循环添加的结构特征.

主要方法:

  • 利用计算研究来分析反应途径.
  • 检查了一系列具有不同程度应变的抗Bredt基.

主要成果:

  • 高度扭曲的桥头双键与反应性相关.
  • 一个小的单元-三元能量差距是易于循环添加的关键因素.
  • 对乙烯,乙, perfluoroethylene 和 cyclooctyne 进行成功的循环添加的预测.

结论:

  • 具有特定结构和电子特性的抗Bredt基可以经历 [2 + 2] 循环添加.
  • 这些发现提供了关于四个环的合成的见解.

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