CAS · 2966-50-9
Product Overview
Silver trifluoroacetate is a high-purity catalysts-auxiliary-agent supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Appearance | White to off-white solid |
|---|---|
| Purity (Ag) | 48.8% |
| Pt | 0.002% max |
| Pd | 0.002% max |
| Au | 0.002% max |
| Rh | 0.001% max |
| Ir | 0.001% max |
| Cu | 0.001% max |
| Ni | 0.002% max |
| Fe | 0.001% max |
| Pb | 0.001% max |
| Al | 0.005% max |
| Sb | 0.001% max |
| Bi | 0.002% max |
| Cd | 0.001% max |
| Total impurities | 0.02% max |
Applications
Silver trifluoroacetate is primarily used as a reagent in organic and organometallic synthesis. It serves as a source of silver ions for halide abstraction, oxidative transformations, and as a catalyst or co-catalyst in cyclization and coupling reactions. It is particularly useful in the preparation of trifluoromethylated compounds, where the trifluoroacetate can act as a leaving group or participate in nucleophilic substitution reactions. In materials chemistry, silver trifluoroacetate is employed in the synthesis of silver-containing nanomaterials, thin films, and conductive coatings, where controlled decomposition provides metallic silver with high purity. It is also used in coordination chemistry to generate silver complexes and study metal-mediated reactions. Additionally, it finds applications in research laboratories for mechanistic studies and method development in organic and inorganic chemistry.
Benefits
The main benefits of silver trifluoroacetate are its high solubility in polar organic solvents and its ability to release reactive silver ions under mild conditions. The trifluoroacetate counterion stabilizes the silver cation while maintaining high reactivity, enabling efficient halide abstraction, catalysis, and oxidation reactions. Its thermal stability allows safe handling and storage under standard laboratory conditions. The compound facilitates high-yield transformations with minimal side reactions, making it useful for precision synthesis in both industrial and research settings. Additionally, in materials applications, it provides a controlled and clean source of silver for producing uniform metallic coatings and nanostructures.
Conclusion
Silver trifluoroacetate is a versatile silver-based reagent with applications in organic synthesis, catalysis, and materials science. Its solubility, reactivity, and stability make it an essential tool for halide abstraction, metal-mediated transformations, and the preparation of silver-containing materials. As demand for precision reagents and advanced functional materials continues to grow, silver trifluoroacetate remains a critical component in modern chemical and materials research.
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