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Catalog Number:
40671
CAS Number:
14592-56-4
Dichlorure de bis(acétonitrile)palladium(II)
Purity:
≥ 99,5% (teneur en Pd : ≥ 41%)
Synonym(s):
Dichlorobis(acétonitrile)palladium(II)
Hazmat
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$90.00 /1G
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Informations sur le produit

Bis(acetonitrile)palladium(II) dichloride is a versatile coordination compound widely utilized in various fields, particularly in organic synthesis and catalysis. This compound, characterized by its unique palladium center, serves as an effective catalyst for cross-coupling reactions, such as Suzuki and Heck reactions, which are essential in the formation of carbon-carbon bonds. Its ability to facilitate these reactions makes it invaluable in the pharmaceutical and materials science industries, where the development of complex organic molecules is crucial.

Moreover, Bis(acetonitrile)palladium(II) dichloride exhibits excellent solubility in organic solvents, enhancing its applicability in diverse reaction conditions. Researchers appreciate its stability and ease of handling, which contribute to more efficient experimental workflows. With its proven track record in catalysis, this compound not only streamlines synthetic processes but also opens avenues for innovation in the development of new materials and pharmaceuticals, making it a preferred choice for professionals seeking reliable and effective catalytic solutions.

Numéro CAS 
14592-56-4
Formule moléculaire
C4H6Cl2N2Pd
Poids moléculaire 
0
Informations générales
Numéro CAS 
14592-56-4
Formule moléculaire
C4H6Cl2N2Pd
Poids moléculaire 
0
Propriétés
Informations complémentaires sur la propriété à venir prochainement !
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Sécurité et réglementation
Matières dangereuses
-
Antibiotique
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Réglementé par la DEA
Non
Avertissements 
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Applications

Bis(acetonitrile)palladium(II) dichloride is widely utilized in research focused on:

  • Catalysis: This compound is a key catalyst in various organic reactions, particularly in cross-coupling reactions like Suzuki and Heck reactions, which are essential in the synthesis of pharmaceuticals and agrochemicals.
  • Electrochemistry: It serves as an effective precursor for palladium nanoparticles, which are used in electrochemical sensors and fuel cells, enhancing their efficiency and performance.
  • Material Science: The compound is employed in the development of advanced materials, such as conductive polymers and nanocomposites, which find applications in electronics and energy storage devices.
  • Organic Synthesis: Its ability to facilitate the formation of carbon-carbon bonds makes it invaluable in the synthesis of complex organic molecules, aiding researchers in drug discovery and development.
  • Environmental Applications: It is also explored for its potential in catalytic converters and pollution control technologies, helping to reduce harmful emissions in industrial processes.

Citations