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Aldehydes and Ketones to Alkenes: Wittig Reaction Mechanism01:14

Aldehydes and Ketones to Alkenes: Wittig Reaction Mechanism

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The Wittig reaction, which converts aldehydes or ketones to alkenes using phosphorus ylides, proceeds through a nucleophilic addition‒elimination process.
The reaction begins with the nucleophilic addition between a phosphorus ylide and the carbonyl compound. Due to its carbanionic character,  phosphorus ylide acts as a strong nucleophile and attacks the electrophilic carbonyl group. This generates a charge-separated dipolar intermediate called betaine. The negatively charged oxygen atom and...
3.3K
Aldehydes and Ketones to Alkenes: Wittig Reaction Overview01:19

Aldehydes and Ketones to Alkenes: Wittig Reaction Overview

7.6K
The Wittig reaction is the conversion of carbonyl compounds-aldehydes and ketones-to alkenes using phosphorus ylides, or the Wittig reagent. The reaction was pioneered by Prof. Georg Wittig, for which he was awarded the Nobel Prize in Chemistry.
7.6K
Preparation of 1° Amines: Azide Synthesis01:22

Preparation of 1° Amines: Azide Synthesis

3.9K
Direct alkylation of ammonia produces polyalkylated amines, along with a quaternary ammonium salt. To exclusively prepare primary amines, the azide synthesis method can be used.
Azide ions act as good nucleophiles and react with unhindered alkyl halides to form alkyl azides. Alkyl azides do not participate in further nucleophilic substitution reactions, thereby eliminating the chances of polyalkylated products. Alkyl azides are reduced by hydride-based reducing agents, like lithium aluminum...
3.9K
Amides to Amines: LiAlH4 Reduction01:20

Amides to Amines: LiAlH4 Reduction

4.6K
Amide reduction with strong reducing agents like lithium aluminum hydride proceeds through a nucleophilic acyl substitution to form amines. Primary, secondary, and tertiary amides yield primary, secondary, and tertiary amines, respectively.
Amide reduction requires two equivalents of the reducing agent, acting as a source of hydride ions. As shown in the figure, the reaction is initiated with a nucleophilic attack by the hydride ion at the carbonyl carbon to form a tetrahedral intermediate.
4.6K
Aryldiazonium Salts to Azo Dyes: Diazo Coupling01:11

Aryldiazonium Salts to Azo Dyes: Diazo Coupling

2.9K
The reaction of weakly electrophilic aryldiazonium (also called arenediazonium) salts with highly activated aromatic compounds leads to the formation of products with an —N=N— link, called an azo linkage. This reaction, presented in Figure 1, is known as diazo coupling and occurs without the loss of the nitrogen atoms of the aryldiazonium salt. Highly activated aromatic compounds such as phenols or arylamines favor the diazo coupling reaction. The coupling generally occurs at the...
2.9K
Nucleophilic Aromatic Substitution of Aryldiazonium Salts: Aromatic SN101:14

Nucleophilic Aromatic Substitution of Aryldiazonium Salts: Aromatic SN1

2.1K
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,...
2.1K

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Preparation of Contiguous Bisaziridines for Regioselective Ring-Opening Reactions
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亚酸-维蒂格反应

Kushik1, A Petrov1, D Ranieri2

  • 1Leibniz Institute for Catalysis (LIKAT), Albert-Einstein-Str. 29a, 18059, Rostock, Germany.

Angewandte Chemie (International ed. in English)
|September 25, 2024
PubMed
概括

一种新的"阿齐德-维蒂格"反应使得多功能三甲 (TBDs) 的合成成为可能. 这种方法有效地将各种有机亚化物和化物结合在一起,为调整分子性质提供了有价值的工具.

关键词:
亚化物是亚化物中的一种.有机合成 有机合成这些是基基的基.三亚扎巴巴丁烯的使用方法维蒂格的反应反应

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科学领域:

  • 有机化学 有机化学
  • 合成化学 合成化学

背景情况:

  • 异质原子的结合调整了有机分子的特性.
  • 三甲 (TBD) 是有趣的,但缺乏一般的合成途径.

研究的目的:

  • 开发一个多功能合成协议,用于triazabutadienes.
  • 为了探索小说"Azide-Wittig"的反应路径.

主要方法:

  • 使用一种固态阻碍的亚化物 (Mes*N3) 和素 (PMe3) 与芳香性化物.
  • 使用计算方法研究反应机制.

主要成果:

  • 开发了"Azide-Wittig"反应,一种多功能TBD合成.
  • 对多种类型的化物和有机化物有被证明的耐受性.
  • 计算研究合理化了从aza-Wittig到azide-Wittig反应性的转变.

结论:

  • "阿齐德-维蒂格"反应为TBD合成提供了一种新的,可适应的方法.
  • 动力控制决定了反应路径,使选择性亚酸-维蒂格结果成为可能.