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Catalog Number:
40707
CAS Number:
1419179-26-2
Chlorobis[dicyclohexyl(phenyl)phosphino](o-tolyl)nickel(II)
Synonym(s):
Jamison Catalyst
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$90.00 /100MG
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Product Information

Chlorobis[dicyclohexyl(phenyl)phosphino](o-tolyl)nickel(II) is a versatile nickel complex that plays a significant role in catalysis, particularly in cross-coupling reactions such as Suzuki and Heck reactions. This compound is recognized for its ability to facilitate the formation of carbon-carbon bonds, making it invaluable in the synthesis of complex organic molecules. Its unique structure, featuring dicyclohexyl(phenyl)phosphine ligands, enhances its stability and reactivity, allowing for efficient catalytic processes in both academic and industrial settings.

Researchers and industry professionals can leverage this compound for the development of pharmaceuticals, agrochemicals, and advanced materials. Its effectiveness in catalyzing reactions under mild conditions not only improves yields but also reduces the need for harsh reagents, making it an environmentally friendly choice. With its high selectivity and efficiency, Chlorobis[dicyclohexyl(phenyl)phosphino](o-tolyl)nickel(II) stands out as a superior option compared to similar nickel complexes, ensuring reliable performance in various synthetic applications.

Synonyms
Jamison Catalyst
CAS Number
1419179-26-2
Molecular Formula
C43H61ClNiP2
Molecular Weight
734.05
MDL Number
MFCD27978415
Melting Point
150 °C (dec.)
Appearance
Lightl yellow to orange powder
Conditions
Store at ≤ -4 °C
General Information
Synonyms
Jamison Catalyst
CAS Number
1419179-26-2
Molecular Formula
C43H61ClNiP2
Molecular Weight
734.05
MDL Number
MFCD27978415
Melting Point
150 °C (dec.)
Appearance
Lightl yellow to orange powder
Conditions
Store at ≤ -4 °C
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

Chlorobis[dicyclohexyl(phenyl)phosphino](o-tolyl)nickel(II) is widely utilized in research focused on:

  • Catalysis: This compound serves as an effective catalyst in various organic reactions, particularly in cross-coupling reactions, which are essential for synthesizing complex organic molecules.
  • Materials Science: It is used in the development of advanced materials, including polymers and nanomaterials, enhancing properties such as strength and thermal stability.
  • Pharmaceutical Development: Researchers leverage its catalytic properties to streamline the synthesis of pharmaceutical compounds, improving efficiency and reducing waste in drug manufacturing.
  • Environmental Chemistry: This chemical plays a role in green chemistry initiatives, helping to develop more sustainable processes by minimizing hazardous waste and energy consumption.
  • Academic Research: It is a valuable tool in academic laboratories for studying reaction mechanisms and developing new synthetic methodologies, contributing to the advancement of chemical knowledge.