Jove
Visualize
Contáctanos

Videos de Conceptos Relacionados

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

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

2.0K
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...
2.0K
1° Amines to Diazonium or Aryldiazonium Salts: Diazotization with NaNO2 Mechanism01:37

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

4.0K
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.
4.0K
Aryldiazonium Salts to Azo Dyes: Diazo Coupling01:11

Aryldiazonium Salts to Azo Dyes: Diazo Coupling

3.0K
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...
3.0K
Nucleophilic Aromatic Substitution: Elimination–Addition01:11

Nucleophilic Aromatic Substitution: Elimination–Addition

4.0K
Simple aryl halides do not react with nucleophiles. However, nucleophilic aromatic substitutions can be forced under certain conditions, such as high temperatures or strong bases. The mechanism of substitution under such conditions involves the highly unstable and reactive benzyne intermediate. Benzyne contains equivalent carbon centers at both ends of the triple bond, each of which is equally susceptible to nucleophilic attack. This 50–50 distribution of products is...
4.0K
Radical Substitution: Allylic Bromination01:27

Radical Substitution: Allylic Bromination

5.2K
In organic synthesis, the formation of products can be altered by changing the reaction conditions. For example, a dibromo addition product is formed when propene is treated with bromine at room temperature. In contrast, propene undergoes allylic substitution in non-polar solvents at high temperatures to give 3-bromopropene. In order to avoid the addition reaction, the bromine concentration must be kept as low as possible throughout the reaction. This can be achieved using N-bromosuccinimide...
5.2K

También podría leer

Artículos Relacionados

Artículos vinculados a este trabajo por autores compartidos, revista y gráfico de citas.

Ordenar por
Same author

<sup>18</sup>F-labelling of (hetero)aryl halides <i>via</i> sequential Miyaura borylation/copper-mediated radiofluorination.

Chemical science·2026
Same author

Deaminative Fluorination of Sulfonamides via Aminocyclopropenium Activation.

Organic letters·2026
Same author

Friedel-Crafts-Type Electrophilic Radiocyanation of (Hetero)arenes.

Organic letters·2026
Same author

Synthesis of <sup>11</sup>C-epoxides, aziridines, and cyclopropanes from structurally modified <sup>11</sup>C-sulfur ylides.

Chemical communications (Cambridge, England)·2025
Same author

IND-Enabling Preclinical Studies of [<sup>11</sup>C]COU, a Trapped Metabolite PET Radiotracer for Monoamine Oxidase-B.

Medicinal chemistry research : an international journal for rapid communications on design and mechanisms of action of biologically active agents·2025
Same author

Posology for 177Lu-DOTATATE Therapy in Neuroendocrine Tumor: Effectiveness of Dose Reduction and Cycle Delay for Improving Therapy Tolerability.

Clinical nuclear medicine·2025
JoVE
x logofacebook logolinkedin logoyoutube logo
ACERCA DE JoVE
Visión GeneralLiderazgoBlogCentro de Ayuda JoVE
AUTORES
Proceso de PublicaciónConsejo EditorialAlcance y PolíticasRevisión por ParesPreguntas FrecuentesEnviar
BIBLIOTECARIOS
TestimoniosSuscripcionesAccesoRecursosConsejo Asesor de BibliotecasPreguntas Frecuentes
INVESTIGACIÓN
JoVE JournalMethods CollectionsJoVE Encyclopedia of ExperimentsArchivo
EDUCACIÓN
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab ManualCentro de Recursos para ProfesoresSitio de Profesores
Términos y Condiciones de Uso
Política de Privacidad
Políticas

Video Experimental Relacionado

Updated: Aug 7, 2025

[DPEPhosbcpCu]PF6: A General and Broadly Applicable Copper-Based Photoredox Catalyst
09:12

[DPEPhosbcpCu]PF6: A General and Broadly Applicable Copper-Based Photoredox Catalyst

Published on: May 21, 2019

9.3K

Radiocianización mediada por cobre a temperatura ambiente de sales de arildiazonio y yoduros de arilo a través de

E William Webb1, Kevin Cheng1, Jay S Wright1

  • 1Department of Radiology, University of Michigan Medical School, 1301 Catherine Street, Ann Arbor, Michigan 48109, United States.

Journal of the American Chemical Society
|March 14, 2023
PubMed
Resumen

Este estudio introduce un nuevo y rápido método para la radiocinización utilizando carbono-11 complejo de cobre (Cu-11CN) y radicales de arilo. Este enfoque funciona a temperatura ambiente, ofreciendo una alternativa más suave para la creación de radiotrazadores.

Más Videos Relacionados

Chemoselective Preparation of 1-Iodoalkynes, 1,2-Diiodoalkenes, and 1,1,2-Triiodoalkenes Based on the Oxidative Iodination of Terminal Alkynes
09:54

Chemoselective Preparation of 1-Iodoalkynes, 1,2-Diiodoalkenes, and 1,1,2-Triiodoalkenes Based on the Oxidative Iodination of Terminal Alkynes

Published on: September 12, 2018

7.8K
Preparation of a Corannulene-functionalized Hexahelicene by CopperI-catalyzed Alkyne-azide Cycloaddition of Nonplanar Polyaromatic Units
09:35

Preparation of a Corannulene-functionalized Hexahelicene by CopperI-catalyzed Alkyne-azide Cycloaddition of Nonplanar Polyaromatic Units

Published on: September 18, 2016

11.6K

Videos de Experimentos Relacionados

Last Updated: Aug 7, 2025

[DPEPhosbcpCu]PF6: A General and Broadly Applicable Copper-Based Photoredox Catalyst
09:12

[DPEPhosbcpCu]PF6: A General and Broadly Applicable Copper-Based Photoredox Catalyst

Published on: May 21, 2019

9.3K
Chemoselective Preparation of 1-Iodoalkynes, 1,2-Diiodoalkenes, and 1,1,2-Triiodoalkenes Based on the Oxidative Iodination of Terminal Alkynes
09:54

Chemoselective Preparation of 1-Iodoalkynes, 1,2-Diiodoalkenes, and 1,1,2-Triiodoalkenes Based on the Oxidative Iodination of Terminal Alkynes

Published on: September 12, 2018

7.8K
Preparation of a Corannulene-functionalized Hexahelicene by CopperI-catalyzed Alkyne-azide Cycloaddition of Nonplanar Polyaromatic Units
09:35

Preparation of a Corannulene-functionalized Hexahelicene by CopperI-catalyzed Alkyne-azide Cycloaddition of Nonplanar Polyaromatic Units

Published on: September 18, 2016

11.6K

Área de la Ciencia:

  • La radioquímica
  • Síntesis orgánica
  • Imágenes médicas

Sus antecedentes:

  • La radiocianización es clave para el desarrollo de radiotrazadores de carbono-11.
  • Los métodos existentes a menudo requieren condiciones duras o reactivos tóxicos costosos como el paladio.
  • Existe la necesidad de técnicas de radiacionalización más suaves y eficientes.

Objetivo del estudio:

  • Para desarrollar un método nuevo, rápido y suave de radiocinización.
  • Para utilizar los radicales de arilo intermedios para la incorporación de carbono 11.
  • Para expandir el acceso a complejos compuestos radiocyanados.

Principales métodos:

  • Generación de radicales de arilo a través de reacciones de tipo Sandmeyer utilizando sales de Cu ((I) y aryldiazonium.
  • Fotocatálisis con luz visible para generar radicales de arilo a partir de yoduros de arilo.
  • Captura de radicales de arilo por un complejo de cianuro de cobre y carbono-11 (Cu-11CN).

Principales resultados:

  • Se consigue una radiocyanidad aromática rápida (5 min) y suave (a temperatura ambiente).
  • Se ha demostrado el éxito de la radiacianización utilizando tanto sales de arildiazonio como yoduros de arilo.
  • Nitrilos de arilo sintetizados orto-disubstituidos, a los que es difícil acceder por otras vías.

Conclusiones:

  • El método desarrollado ofrece un enfoque complementario y eficiente para la radiocinización aromática.
  • Esta técnica permite el acceso a productos radiocyanados valiosos en condiciones suaves.
  • El uso de radicales de arilo capturados por Cu-CN representa un avance significativo en la síntesis de radiotrazadores.