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Catalog Number:
27684
CAS Number:
60134-75-0
Di-μ-Chlorobis[chloro(cyclohexène)platine(II)]
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Product Information

Di-m-Chlorobis[chloro(cyclohexene)platinum(II)] is a specialized platinum-based compound that has garnered attention in the fields of organometallic chemistry and catalysis. This compound is recognized for its unique structure, which includes two chlorinated platinum centers coordinated with cyclohexene ligands. Its distinctive properties make it particularly valuable in various applications, including catalysis for organic synthesis and as a potential therapeutic agent in cancer treatment. Researchers have explored its efficacy in promoting reactions that require a robust metal catalyst, showcasing its ability to facilitate complex transformations with high selectivity.

In addition to its catalytic applications, Di-m-Chlorobis[chloro(cyclohexene)platinum(II)] has been investigated for its potential in medicinal chemistry, particularly in the development of novel anticancer drugs. Its platinum core is known for its ability to interact with DNA, which is a critical mechanism in the design of chemotherapeutic agents. This compound stands out due to its dual functionality, offering both catalytic properties and biological activity, making it a versatile choice for researchers and industry professionals seeking innovative solutions in chemical synthesis and drug development.

CAS Number
60134-75-0
Molecular Formula
C 12 H 20 Cl 4 Pt 2
Molecular Weight
696.26
MDL Number
MFCD00050944
PubChem ID
56846358
Conditions
Magasin chez RT
General Information
CAS Number
60134-75-0
Molecular Formula
C 12 H 20 Cl 4 Pt 2
Molecular Weight
696.26
MDL Number
MFCD00050944
PubChem ID
56846358
Conditions
Magasin chez RT
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
Non
Antibiotic
Non
DEA-regulated
Non
Warnings
-
Applications

Di-m-Chlorobis[chloro(cyclohexene)platinum(II)] is widely utilized in research focused on:

  • Cancer Treatment: This compound is being explored for its potential as an anti-cancer agent, particularly in targeting specific types of tumors, offering a novel approach compared to traditional chemotherapy.
  • Coordination Chemistry: It serves as a valuable model for studying coordination complexes, helping researchers understand metal-ligand interactions and their implications in various chemical reactions.
  • Material Science: The compound is used in developing advanced materials, particularly in catalysis, where it can enhance reaction efficiency and selectivity in industrial processes.
  • Pharmaceutical Research: Its unique properties make it a candidate for drug formulation studies, where it can improve the delivery and efficacy of therapeutic agents.
  • Environmental Chemistry: Researchers are investigating its role in environmental applications, such as pollutant degradation, providing a greener alternative to conventional methods.

Citations