ZIRCONIUM(IV) HYDROGENPHOSPHATECAS#13772-29-7
ZIRCONIUM(IV) HYDROGENPHOSPHATECAS#13772-29-7 Promotion Season Now in Store and Free Sample for Testing with Factory Price
Chemical Name:ZIRCONIUM(IV) HYDROGENPHOSPHATECAS
CAS No.:13772-29-7
Molecular Formula:H3O4PZr
Molecular weight189.22
Sample: Available
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Products Description of ZIRCONIUM(IV) HYDROGENPHOSPHATECAS#13772-29-7
Zirconium phosphate (ZrP), also known as zirconium hydrogen phosphate, has a chemical formula of Zr(HPO₄)₂.2H₂O and is a fine phosphorus chemical product. Zirconium phosphate has a white powder appearance, an acidic pH value, stable chemical properties, is insoluble in water, insoluble in general organic solvents, has good acid and alkali resistance, has high thermal stability and mechanical strength, and is widely used as a solid lubricant in self-lubricating composite materials. Zirconium phosphate can be used as an adsorption material because of its large specific surface area and good ion exchangeability, and can be applied in environmental protection, medicine, new materials, catalysts and other fields.
ZIRCONIUM(IV) HYDROGENPHOSPHATE Chemical Properties
density | 3.3 g/mL at 25 °C(lit.) |
form | powder |
EPA Substance Registry System | Phosphoric acid, zirconium(4+) salt (2:1) (13772-29-7) |
Product Application of ZIRCONIUM(IV) HYDROGENPHOSPHATECAS#13772-29-7
Zirconium phosphate is an inorganic carrier with ion exchange properties and is widely used in ion exchangers, especially as a carrier of silver-loaded antibacterial agents. The main crystal structures of silver-based zirconium phosphates in the domestic zirconium phosphate antibacterial agent market are mainly divided into two categories: layered zirconium phosphate and cubic zirconium phosphate. Among them, the lattice structure of layered zirconium phosphate is α-ZrP configuration. Its exchange sites exist in the layered gaps. The hydroxyl groups in the gaps are active centers and can be used for ion exchange. The structure of cubic zirconium phosphate is hexahedral. Ion exchange is mainly carried out through the micropores on the surface of the hexahedron.
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