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Catalog Number:
40686
CAS Number:
12081-16-2
Dímero de clorobis(etileno)rodio(I)
Purity:
≥ 96% (basado en el contenido de carbono): 52,9 ± 1% (ensayo)
Synonym(s):
Diclorotetra(etileno)dirodio(I), Bis[clorobis(etileno)rodio]
Documents
$447.47 /250 mg
Tamaño
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Información del producto

Chlorobis(ethylene)rhodium(I) dimer is a versatile and highly effective catalyst widely utilized in organic synthesis and industrial applications. This compound is particularly valued for its role in facilitating various reactions, including hydroformylation and carbonylation processes. Its unique ability to activate ethylene makes it an essential component in the production of fine chemicals and pharmaceuticals, where precision and efficiency are paramount. Researchers and industry professionals appreciate its stability and selectivity, which contribute to higher yields and reduced by-products in chemical reactions.

In addition to its catalytic properties, Chlorobis(ethylene)rhodium(I) dimer is also employed in the development of advanced materials and in the field of polymer chemistry. Its effectiveness in promoting polymerization reactions allows for the creation of tailored materials with specific properties, making it a valuable asset in both academic research and industrial production. With its proven track record and broad applicability, this compound stands out as a key player in modern chemical synthesis and materials science.

Número CAS
12081-16-2
Fórmula molecular
C8H16Cl2Rh2
Peso molecular
388.93
Número MDL
MFCD00013206
Condiciones
Conservar a ≤ -4 °C
Información general
Número CAS
12081-16-2
Fórmula molecular
C8H16Cl2Rh2
Peso molecular
388.93
Número MDL
MFCD00013206
Condiciones
Conservar a ≤ -4 °C
Propiedades
¡Pronto habrá más información sobre la propiedad!
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Seguridad y normativas
Materiales peligrosos
-
Antibiótico
-
Regulado por la DEA
No
Advertencias
-
Aplicaciones

Chlorobis(ethylene)rhodium(I) dimer is widely utilized in research focused on:

  • Catalysis in Organic Synthesis: This compound serves as an efficient catalyst in various organic reactions, particularly in the formation of carbon-carbon bonds, making it invaluable in pharmaceutical and agrochemical industries.
  • Hydrogenation Reactions: It is employed in hydrogenation processes to convert unsaturated compounds into saturated ones, which is crucial for producing fine chemicals and intermediates in the chemical industry.
  • Polymerization Processes: The compound is used in the polymerization of olefins, contributing to the production of high-performance polymers that are essential in packaging, automotive, and construction sectors.
  • Environmental Applications: It plays a role in catalyzing reactions that help in the degradation of pollutants, aiding in environmental remediation efforts.
  • Research in Coordination Chemistry: This chemical is significant in academic research for studying coordination complexes, helping to advance the understanding of metal-ligand interactions.

Citas