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AI67511

12021-95-3 | Zirconate(2-), hexafluoro-, dihydrogen, (OC-6-11)-

Packsize Purity Availability Price Discounted Price    Quantity
5g 45% in stock $25.00 $18.00 -   +
25g 45% in stock $48.00 $34.00 -   +

*All products are for research use only and not intended for human or animal use.

*All prices are in USD.

Description
Catalog Number: AI67511
Chemical Name: Zirconate(2-), hexafluoro-, dihydrogen, (OC-6-11)-
CAS Number: 12021-95-3
Molecular Formula: F6H2Zr
Molecular Weight: 207.2303
MDL Number: MFCD00082965
SMILES: F[Zr](F)(F)F.F.F

 

Upstream Synthesis Route
  • Fluorozirconic acid, also known as hexafluorozirconic acid, is a vital chemical reagent used in numerous chemical synthesis processes. Its exceptional reactivity and strong acidic nature make it a valuable tool in various industries, particularly in the realm of synthetic chemistry.When it comes to chemical synthesis, fluorozirconic acid is esteemed for its ability to catalyze a wide range of organic reactions. It serves as a versatile catalyst for various transformations, including Friedel-Crafts acylation, alkylation, and cyclization reactions. Additionally, it plays a crucial role in promoting esterification, hydration, and dehydration reactions in organic synthesis.Fluorozirconic acid enables chemists to access unique reaction pathways and formations that are otherwise challenging or impossible to achieve using conventional catalysts. Its strong acidity and high reactivity ensure efficient and selective transformations, leading to high yields of desired products.Moreover, fluorozirconic acid finds application in the manufacturing of specialty chemicals, pharmaceuticals, and agrochemicals. Its catalytic properties allow for the production of complex molecules with specific stereochemistry and functional groups, essential in drug discovery and material science.In conclusion, fluorozirconic acid stands as a powerful tool in the hands of synthetic chemists, driving innovation and enabling the synthesis of intricate molecular structures with precision and efficiency.
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