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相关概念视频

Cycloaddition Reactions: Overview01:16

Cycloaddition Reactions: Overview

2.5K
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.
2.5K
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.
3.5K
Woodward–Hoffmann Selection Rules and Microscopic Reversibility01:34

Woodward–Hoffmann Selection Rules and Microscopic Reversibility

3.0K
Electrocyclic reactions, cycloadditions, and sigmatropic rearrangements are concerted pericyclic reactions that proceed via a cyclic transition state. These reactions are stereospecific and regioselective. The stereochemistry of the products depends on the symmetry characteristics of the interacting orbitals and the reaction conditions. Accordingly, pericyclic reactions are classified as either symmetry-allowed or symmetry-forbidden. Woodward and Hoffmann presented the selection criteria for...
3.0K
Pericyclic Reactions: Introduction01:17

Pericyclic Reactions: Introduction

8.2K
Pericyclic reactions are organic reactions that occur via a concerted mechanism without generating any intermediates. The reactions proceed through the movement of electrons in a closed loop to form a cyclic transition state, where rearrangement of the σ and π bonds yields specific products.
Pericyclic reactions can be classified into three categories: electrocyclic reactions, cycloaddition reactions, and sigmatropic rearrangements. Electrocyclic reactions and sigmatropic...
8.2K
Cycloaddition Reactions: MO Requirements for Photochemical Activation01:12

Cycloaddition Reactions: MO Requirements for Photochemical Activation

2.0K
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.
2.0K
Thermal Electrocyclic Reactions: Stereochemistry01:17

Thermal Electrocyclic Reactions: Stereochemistry

2.0K
The stereochemistry of electrocyclic reactions is strongly influenced by the orbital symmetry of the polyene HOMO. Under thermal conditions, the reaction proceeds via the ground-state HOMO.
Selection Rules: Thermal Activation
Conjugated systems containing an even number of π-electron pairs undergo a conrotatory ring closure. For example, thermal electrocyclization of (2E,4E)-2,4-hexadiene, a conjugated diene containing two π-electron pairs, gives trans-3,4-dimethylcyclobutene.
2.0K

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相关实验视频

Updated: Jun 6, 2025

Efficient Construction of Drug-like Bispirocyclic Scaffolds Via Organocatalytic Cycloadditions of &#945;-Imino &#947;-Lactones and Alkylidene Pyrazolones
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通过协调结构指导表面循环反应.

Qing Wang1, Xiaoqing Liu1, Tianming Lu1

  • 1Department of Physics, Nanchang University, Nanchang 330031, People's Republic of China.

The Journal of chemical physics
|December 3, 2024
PubMed
概括
此摘要是机器生成的。

金属协调结构影响化学反应. 在黄金表面上,由于反应温度的重叠,2,3-二-6,7-二甲 (DDN) 形成了多样化的产品,而在银面上,它通过金属诱导的循环化产生了单一的聚合物.

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科学领域:

  • 表面科学是一门科学.
  • 有机化学 有机化学
  • 材料科学是一种材料科学.

背景情况:

  • 金属协调结构是反应通路和产品的关键.
  • 2,3-二-6,7-二纳 (DDN) 具有和基的功能组.

研究的目的:

  • 研究金属表面在调节DDN的反应性方面的作用.
  • 在不同的金属基板上探索循环化和聚合产品的形成.

主要方法:

  • 扫描道显微镜 (STM) 用于在室温下研究Au111) 和Ag111) 表面上的DDN.
  • 对不同金属基板上的分子自我组装和反应途径的分析.

主要成果:

  • 在Au{111}上,DDN中和基的重叠反应温度导致了多种C-C合和循环产物.
  • 在Ag{111}上,金属协调结构通过循环化直接诱导单一类型的聚合物形成.

结论:

  • 金属协调结构与功能组的激活温度之间的相互作用决定了聚合的结果.
  • DDN的表面依赖反应性突出显示了基质相互作用在控制分子转化中的重要性.