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Nucleophilic Aromatic Substitution of Aryldiazonium Salts: Aromatic SN101:14

Nucleophilic Aromatic Substitution of Aryldiazonium Salts: Aromatic SN1

2.7K
Treating arylamines with nitrous acid gives aryldiazonium salts that are effective substrates in nucleophilic aromatic substitution reactions. The diazonio group in these salts can be easily displaced by different nucleophiles, yielding a wide variety of substituted benzenes. The leaving group departs as nitrogen gas, and this easy elimination is the driving force for the substitution reaction.
In the Sandmeyer reaction, for example, the diazonio group is replaced by a chloro, bromo,...
2.7K
Aromatic Compounds: Overview01:25

Aromatic Compounds: Overview

13.5K
In general, the term ‘aromatic’ indicates a pleasant smell or fragrance from fresh flowers, freshly prepared coffee, etc. In the early history of organic chemistry, many benzene derivatives were isolated from the pleasant odor oils of the plants. For example, vanillin was isolated from the oil of vanilla, methyl salicylate from the oil of wintergreen, and cinnamaldehyde from the oil of cinnamon. They all had a pleasant odor; hence the name aromatic was given.
In 1825, Faraday isolated...
13.5K
Basicity of Aromatic Amines01:18

Basicity of Aromatic Amines

8.0K
The basicity of aromatic amines is much weaker than that of aliphatic amines due to the involvement of the lone pair of electrons over the N atom in resonance with the aryl rings. Generally, the electron-donating ability of any substituents on the aryl ring of aromatic amines increases the basicity of the amine by increasing electron density, and hence the availability of lone pair on the nitrogen. On the other hand, electron-withdrawing functional groups on the aryl ring of amines decrease the...
8.0K
Nomenclature of Aromatic Compounds with a Single Substituent01:23

Nomenclature of Aromatic Compounds with a Single Substituent

9.9K
Benzene is the simplest aromatic hydrocarbon or arene. The IUPAC names for simple monosubstituted benzene derivatives are derived by adding the substituent's name as a prefix to the parent benzene. For example, halobenzene, where the halogen could be fluoro (F), chloro (Cl), bromo (Br), and iodo (I).
9.9K
Five-Membered Heterocyclic Aromatic Compounds: Overview01:13

Five-Membered Heterocyclic Aromatic Compounds: Overview

5.3K
Heterocyclic aromatic compounds are cyclic compounds that are aromatic and have one or more heteroatoms—atoms other than carbon, in the ring. Depending upon the number of atoms present in the ring, they can be either five or six-membered. Examples of five-membered heterocyclic aromatic compounds include pyrrole, furan, thiophene, and imidazole. Pyrrole consists of one nitrogen atom having one lone pair of electrons. Furan and thiophene have one oxygen and one sulfur heteroatom,...
5.3K
Nucleophilic Aromatic Substitution: Addition–Elimination (SNAr)01:30

Nucleophilic Aromatic Substitution: Addition–Elimination (SNAr)

4.6K
Nucleophilic substitution in aromatic compounds is feasible in substrates bearing strong electron-withdrawing substituents positioned ortho or para to the leaving group. The reaction proceeds via two steps: the addition of the nucleophile and the elimination of the leaving group.
The reaction begins with an attack of the nucleophile on the carbon that holds the leaving group. This results in the delocalization of the π electrons over the ring carbons. The resonance interaction between...
4.6K

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相关实验视频

Updated: Jan 19, 2026

Nucleophilic Aromatic Substitution of Aryldiazonium Salts: Aromatic SN1
01:14

Nucleophilic Aromatic Substitution of Aryldiazonium Salts: Aromatic SN1

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一个稳定的芳香四环丁二

Xiaofei Sun1, Thomas Simler1, Ravi Yadav1

  • 1Institut für Anorganische Chemie, Karlsruher Institut für Technologie (KIT) , Engesserstrasse 15 , 76131 Karlsruhe , Germany.

Journal of the American Chemical Society
|September 12, 2019
PubMed
概括

研究人员合成并描述了第一个芳香环丁二的类型. 这种新型的2π电子四环丁二具有正方形平面几何形状,证实了它的芳香性.

科学领域:

  • 有机化学
  • 芳香性研究
  • 无机合成

背景情况:

  • 环丁二是基本的芳香系统,但它们的类型仍然难以捉摸.
  • 了解在芳香性中的作用,可以了解粘合和电子结构.

研究的目的:

  • 合成和表征第一个基于的芳香环丁二烯.
  • 调查这种新集群的结构和电子特性.

主要方法:

  • 一个直接的合成涉及[LSiCl],[LSISiL]和NaBPh4.
  • 包括分子结构确定在内的完整表征.
  • 支持电子结构解释的理论计算.

主要成果:

  • 成功分离并表征了四环丁二烯基,[(LSi) [4](BPh4) 2.
  • 结构显示出一个四个 Si4 环,近乎正方形的平面几何形状.
  • 理论计算证实了具有单点基态的2π电子芳香系统.

结论:

  • 合成了第一个芳香环丁二类型.
  • 该化合物具有经典的2π芳香度,扩大了芳香系统的范围.

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  • 这项工作为探索基于的芳香化合物开辟了新的途径.