Understanding Trans-Platinum(II)diammine Dichloride: Properties, Applications, and Research Insights
Explore the critical role and versatile applications of Trans-Platinum(II)diammine Dichloride in advanced chemical synthesis, medicinal research, and material science, from a trusted supplier in China.
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trans-Platinum(II)diammine dichloride
As a premier manufacturer in China, we offer high-quality trans-Platinum(II)diammine dichloride, a vital compound with significant applications in medicinal chemistry and materials science. Its potent properties have made it a cornerstone in cancer treatment protocols.
- Pioneering Cancer Treatment: Leveraging its potent antitumor properties, this compound is central to developing novel therapeutic agents for various cancers, showcasing its importance in platinum-based anticancer agents.
- Advancing Coordination Chemistry: Researchers utilize its unique structure for exploring metal-ligand interactions, crucial for developing new materials and understanding coordination compound synthesis.
- Key Pharmaceutical Intermediate: Its role as a pharmaceutical intermediate underscores its value in the synthesis of complex molecules, contributing to advancements in the pharmaceutical intermediates research field.
- Material Science Innovation: Its unique electronic properties are explored in materials science, opening avenues for advanced materials and sensors, demonstrating its utility in platinum catalysis applications.
Advantages Offered
High Purity and Quality
We ensure a minimum purity of 97% for our trans-Platinum(II)diammine dichloride, guaranteeing reliable results for your critical pharmaceutical intermediates research and other sensitive applications.
Rich Platinum Content
With a platinum content of ≥65%, this compound is ideal for applications requiring precise platinum integration, supporting advanced coordination compound synthesis and analyses.
Versatile Solubility
Soluble in dimethylsulfoxide (DMSO) and dimethylformamide (DMF), our product offers excellent processability for various synthetic pathways, crucial for complex platinum-based anticancer agents development.
Key Applications
Cancer Treatment
A critical component in chemotherapy, this compound's ability to disrupt DNA replication makes it indispensable for treating various cancers, aligning with the needs of platinum-based anticancer agents research.
Coordination Chemistry
Essential for studying metal-ligand interactions and developing new inorganic materials, supporting fundamental research in coordination compound synthesis.
Material Science
Its unique electronic and catalytic properties are leveraged in creating advanced materials and sensors, contributing to innovation in platinum catalysis applications.
Chemical Synthesis
Serves as a versatile intermediate in the synthesis of complex organic and inorganic molecules, vital for custom synthesis and pharmaceutical intermediates research.