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Pentamethylcyclopentadienyltris (acetonitrile)ruthenium(II) hexafluorophosphate CAS:99604-67-8

Pentamethylcyclopentadienyltris(acetonitrile)ruthenium(II) hexafluorophosphate is a notable organometallic complex with diverse applications in catalysis, coordination chemistry, and materials science. This compound features a ruthenium(II) center coordinated to three acetonitrile ligands and a pentamethylcyclopentadienyl ligand, and it is associated with the hexafluorophosphate anion. The unique electronic and structural properties of this complex make it valuable in various chemical processes and material applications.


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Application and Effect:

In catalysis, Pentamethylcyclopentadienyltris(acetonitrile)ruthenium(II) hexafluorophosphate serves as a versatile catalyst for organic transformations, including hydrogenation, hydrosilylation, and C-C bond-forming reactions. Its use in catalysis contributes to enhanced reaction rates, selectivity, and efficiency in synthetic processes, making it pertinent for the development of pharmaceuticals, fine chemicals, and specialty materials. Furthermore, this compound plays a crucial role in coordination chemistry, serving as a building block for the design and synthesis of novel coordination complexes and organometallic species. Its unique reactivity and stability make it valuable for the preparation of functional metal-containing compounds with tailored properties and applications across various research and industrial domains. Moreover, Pentamethylcyclopentadienyltris(acetonitrile)ruthenium(II) hexafluorophosphate finds application in materials science, particularly in the fabrication of advanced materials, such as molecular magnets, conductive polymers, and redox-active systems. Its incorporation into these materials imparts desirable electronic, magnetic, and electrochemical properties, making it relevant in the development of electronic devices, energy storage technologies, and sensors. Overall, Pentamethylcyclopentadienyltris(acetonitrile)ruthenium(II) hexafluorophosphate's significance lies in its versatile applications in catalysis, coordination chemistry, and materials science, driving innovations across multiple disciplines and contributing to the advancement of chemical processes, functional materials, and technological solutions. Its unique reactivity and coordination properties make it a valuable tool for researchers and industry professionals seeking to develop new chemical processes, coordination complexes, and advanced materials.

Product Sample:

L-Arginine1
L-Arginine2

Product Packing:

L-Arginin3

Additional Information:

Composition C16H24F6N3PRu
Assay 99%
Appearance White power
CAS No.  99604-67-8
Packing Small and bulk
Shelf Life 2 years
Storage Store in cool and dry area
Certification ISO.

 


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