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Diazonium Group Substitution with Halogens and Cyanide: Sandmeyer and Schiemann Reactions01:20

Diazonium Group Substitution with Halogens and Cyanide: Sandmeyer and Schiemann Reactions

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Arenediazonium substitution reactions occur when the diazonium group is substituted by various functional groups such as halides, hydroxyl, nitrile, etc. For instance, arenediazonium salts react with copper(I) salts of chloride, bromide, or cyanide to form corresponding aryl chlorides, bromides, and nitriles. These reactions are named Sandmeyer reactions. Although the mechanism of this reaction is complicated, as illustrated in Figure 1, they are believed to progress via an aryl copper...
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Aryldiazonium Salts to Azo Dyes: Diazo Coupling01:11

Aryldiazonium Salts to Azo Dyes: Diazo Coupling

3.6K
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 para...
3.6K
1° Amines to Diazonium or Aryldiazonium Salts: Diazotization with NaNO2 Overview01:26

1° Amines to Diazonium or Aryldiazonium Salts: Diazotization with NaNO2 Overview

3.8K
Nitrous acid and nitric acids are two types of acids containing nitrogen, among which nitrous acid is weaker than nitric acid. Nitrous acid with a pKa value of 3.37 ionizes in water to give a nitrite ion and the hydronium ion.
The nitrous acid is unstable. Hence, it is formed in situ from a solution of sodium nitrite and cold aqueous acids such as hydrochloric or sulfuric acid. In an acidic solution, the –OH group of nitrous acid undergoes protonation to give oxonium ion, followed by...
3.8K
1° Amines to Diazonium or Aryldiazonium Salts: Diazotization with NaNO2 Mechanism01:37

1° Amines to Diazonium or Aryldiazonium Salts: Diazotization with NaNO2 Mechanism

4.7K
Nitrous acid is a relatively weak and unstable acid prepared in situ by the reaction of sodium nitrite and cold, dilute hydrochloric acid. In an acidic solution, the nitrous acid undergoes protonation when it loses water to form a nitrosonium ion—an electrophile. Nitrous acid reacts with primary amines to give diazonium salts. The reaction is called diazotization of primary amines.
4.7K
Diazonium Group Substitution: –OH and –H01:19

Diazonium Group Substitution: –OH and –H

3.2K
Nitrous acid, a weak acid, is prepared in situ via the reaction of sodium nitrite with a strong acid under cold conditions. This nitrous acid prepared in situ reacts with primary arylamines to form arenediazonium salts. Such reactions are known as diazotization reactions. As shown in Figure 1, the formation of arenediazonium salts begins with the decomposition of nitrous acid in an acidic solution to give nitrosonium ions.
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Video Experimental Relacionado

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Design, Synthesis, and Photochemical Properties of Clickable Caged Compounds
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Design, Synthesis, and Photochemical Properties of Clickable Caged Compounds

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Librerías de química de clic modulares para pantallas funcionales que utilizan un reactivo diazotizante

Genyi Meng1, Taijie Guo1, Tiancheng Ma1

  • 1Key Laboratory of Organofluorine Chemistry, Center for Excellence in Molecular Synthesis, Shanghai Institute of Organic Chemistry, University of the Chinese Academy of Sciences, Chinese Academy of Sciences, Shanghai, China.

Nature
|October 4, 2019
PubMed
Resumen

Este estudio presenta un método seguro y práctico para la síntesis de azidas a partir de aminas primarias abundantes. Este avance amplía el alcance de la química de clic, particularmente para las reacciones de cicloadición azida-alquina catalizadas por cobre.

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Área de la Ciencia:

  • Química orgánica
  • Biología Química
  • Ciencias de los materiales

Sus antecedentes:

  • La química de clic permite la síntesis modular rápida de moléculas con las propiedades deseadas.
  • La cicloadición azida-alquina catalizada por cobre (CuAAC) y el intercambio de fluoruro de azufre (SuFEx) son reacciones de clic clave.
  • Las reacciones CuAAC están limitadas por la toxicidad y el potencial explosivo de los reactivos azidas.

Objetivo del estudio:

  • Desarrollar un método seguro y práctico para la síntesis de azidas a partir de aminas primarias.
  • Ampliar la accesibilidad de los reactivos de azida para aplicaciones de química de clic.
  • Mejorar la utilidad de las reacciones CuAAC en varios campos científicos.

Principales métodos:

  • Una nueva reacción para la conversión de aminas primarias en azidas utilizando azido de fluorosulfurilo (FSO2N3).
  • Síntesis de alto rendimiento de más de 1200 azidas utilizando placas de 96 pozos.
  • Demostración de la seguridad y viabilidad de la reacción.

Principales resultados:

  • Con éxito sintetizó una gran biblioteca de azidas de aminas primarias.
  • Se ha establecido un método fiable y seguro de preparación de azida.
  • El nuevo método es compatible con la reacción CuAAC ampliamente utilizada.

Conclusiones:

  • El método desarrollado amplía significativamente la gama de azidas y 1,2,3-triazoles accesibles.
  • Este avance proporciona una herramienta poderosa para la síntesis orgánica, la química medicinal y la ciencia de los materiales.
  • La seguridad y la eficiencia de la reacción la hacen altamente aplicable en varias áreas de investigación.