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Catalog Number:
41236
CAS Number:
1919884-90-4
Bromodicarbonyl[bis[2-(diisopropylphosphino)éthyl]amine]manganèse(I)
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$341.81 /100 mg
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Product Information

Bromodicarbonyl[bis[2-(diisopropylphosphino)ethyl]amine]manganese(I) is a versatile organometallic compound known for its unique coordination properties and catalytic capabilities. This compound features a manganese center coordinated with two diisopropylphosphinoethylamine ligands, making it an excellent candidate for applications in catalysis, particularly in organic synthesis and polymerization reactions. Its ability to facilitate various chemical transformations, including C–C bond formation and functional group interconversions, positions it as a valuable tool for researchers and industry professionals seeking efficient and effective synthetic routes.

Moreover, the compound's bromine substituent enhances its reactivity, allowing for the development of novel materials and intermediates in pharmaceutical and agrochemical industries. Its stability and selectivity in catalyzing reactions make it a preferred choice for chemists looking to optimize reaction conditions and improve yields. With its promising applications in both academic research and industrial processes, Bromodicarbonyl[bis[2-(diisopropylphosphino)ethyl]amine]manganese(I) stands out as a significant compound for advancing chemical innovation.

CAS Number
1919884-90-4
Molecular Formula
C 18 H 37 BrMnNO 2 P 2
Molecular Weight
496.29
MDL Number
MFCD31618119
PubChem ID
132274872
Conditions
Conserver à ≤ -4 °C
General Information
CAS Number
1919884-90-4
Molecular Formula
C 18 H 37 BrMnNO 2 P 2
Molecular Weight
496.29
MDL Number
MFCD31618119
PubChem ID
132274872
Conditions
Conserver à ≤ -4 °C
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
Non
Antibiotic
Non
DEA-regulated
Non
Warnings
-
Applications

Bromodicarbonyl[bis[2-(diisopropylphosphino)ethyl]amine]manganese(I) is widely utilized in research focused on:

  • Catalysis: This compound serves as a catalyst in various organic reactions, enhancing reaction rates and improving yields, particularly in the synthesis of complex molecules.
  • Coordination Chemistry: It plays a significant role in coordination chemistry, helping researchers explore metal-ligand interactions and develop new coordination complexes for various applications.
  • Material Science: The compound is used in the development of advanced materials, including polymers and nanomaterials, due to its unique properties that facilitate the creation of innovative materials.
  • Medicinal Chemistry: It is investigated for potential applications in drug development, particularly in creating metal-based therapeutics that can target specific biological pathways.
  • Environmental Chemistry: The compound is also explored for its ability to catalyze reactions that can help in environmental remediation processes, such as breaking down pollutants in water and soil.

Citations