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Carbocations02:10

Carbocations

11.1K
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...
11.1K
Aldehydes and Ketones with HCN: Cyanohydrin Formation Overview01:32

Aldehydes and Ketones with HCN: Cyanohydrin Formation Overview

2.7K
Cyanohydrins are compounds that contain –CN and –OH groups on the same carbon atom. They are formed by the nucleophilic addition of the cyanide ions to the carbonyl group. Cyanide ions are highly basic and nucleophilic and can be generated from HCN under aqueous conditions. However, since HCN is a weak acid, the number of cyanide ions generated is very small. Hence, a small amount of base or KCN/NaCN is added to HCN to increase the concentration of the cyanide ions in the reaction...
2.7K
Carboxylic Acids to Acid Chlorides01:18

Carboxylic Acids to Acid Chlorides

6.8K
Carboxylic acids react with SOCl2 or PCl5 to form acid chlorides. Amongst the carboxylic acid derivatives, acid chlorides are the most reactive and synthetically important derivatives. They are useful reagents for Friedel–Crafts acylation of some aromatic compounds.
6.8K
Reactions of α-Halocarbonyl Compounds: Nucleophilic Substitution01:17

Reactions of α-Halocarbonyl Compounds: Nucleophilic Substitution

3.2K
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.
3.2K
Nucleophilic Substitution Reactions02:34

Nucleophilic Substitution Reactions

16.3K
Historical perspective
In 1896, the German chemist Paul Walden discovered that he could interconvert pure enantiomeric (+) and (-) malic acids through a series of reactions. This conversion suggested the involvement of optical inversion during the substitution reaction. Further, in 1930, Sir Christopher Ingold described for the first time two different forms of nucleophilic substitution reactions, which are known as SN1 (nucleophilic substitution unimolecular) and SN2 (nucleophilic substitution...
16.3K
Aldehydes and Ketones with HCN: Cyanohydrin Formation Mechanism01:10

Aldehydes and Ketones with HCN: Cyanohydrin Formation Mechanism

3.1K
Cyanohydrins are formed when cyanide nucleophiles and carbonyl compounds like aldehydes and ketones react. A strong base, the cyanide ion, catalyzes cyanohydrin formation. The ions are generated from HCN under aqueous conditions. Once the cyanide ions are generated, the first step involves the nucleophilic attack of the cyanide ions on the electrophilic carbonyl carbon. This attack shifts the π electrons from the C=O to the oxygen atom forming the alkoxide ion intermediate. The alkoxide anion...
3.1K

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Updated: Jun 20, 2025

Preparation and Use of Carbonyl-decorated Carbenes in the Activation of White Phosphorus
14:07

Preparation and Use of Carbonyl-decorated Carbenes in the Activation of White Phosphorus

Published on: October 3, 2014

13.6K

Ph3PCN2:炭素原子移転のための安定した反応剤

Taichi Koike1, Jhen-Kuei Yu1, Max M Hansmann1

  • 1Fakultät für Chemie und Chemische Biologie, Technische Universität Dortmund, 44227 Dortmund, Germany.

Science (New York, N.Y.)
|July 18, 2024
PubMed
まとめ

化学者は安定したダイアゾフォスファースイライドを開発し 精密な単一原子の炭素移転を行いました ピラゾール,アルキン,ブタトリエンを含む複雑な分子の選択合成を可能にします.

科学分野:

  • 有機化学
  • 合成化学

背景:

  • 単一の原子レベルでの精密な分子改変は化学における重要な課題です.
  • 化学選択的単原子炭素導入のための反応剤の開発は,依然として大変な課題です.

研究 の 目的:

  • 新型ダイアゾフォスファルス・イライドの 簡潔でアジドのない合成を報告する
  • 選択的な炭素移転反応剤としてこのイライドの有用性を実証する.

主な方法:

  • 結晶性および分離性ダイアゾフォスファルスイリド (Ph3PCN2) の合成
  • 添加物なしの移転反応剤として様々な有機変異に使用する.

主要な成果:

  • ダイアゾフォスフォースイライドは,Ph3PCとCN2の断片を高度に選択的に転送する反応剤として作用する.
  • フォスファー・イライド末端のヘテロキュムレンと多重置換のピラゾールの合成に成功した.
  • カーボニル化合物との反応で,アルキンとブタトリエンのためのヴィニリデンを形成する,独占的な炭素原子移転が実証されている.

結論:

  • 開発されたダイアゾフォスファースイライドは,単原子の炭素転送のためのエレガントな解決策を提供します.

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A Technical Guide for Performing Spectroscopic Measurements on Metal-Organic Frameworks
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A Technical Guide for Performing Spectroscopic Measurements on Metal-Organic Frameworks

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  • この反応剤は,高度な選択性を持つ多様な有機構造を合成するための汎用的なプラットフォームを提供します.