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Using the proprietary flame combustion technology, high-purity titanium tetrachloride is burned in a hydrogen-oxygen flame, which makes it possible to obtain nanoscale titanium dioxide with high purity, large specific surface area and high dispersion.
High purity nanoscale rutile titanium dioxide with cosmetic grade, produced from high-purity titanium tetrachloride by the hydrothermal method, is suitable for cosmetic applications. As a functional material, customization services are available according to customer demands.
Synthesized via a controlled hydrothermal route using high-purity TiCl4 precursor, Electronic Grade Titanium Dioxide Series offers superior sintering activity, enabling lower firing temperatures and improved microstructural integrity in electro-ceramic systems.
Refined via a continuous chlorination and multi-stage distillation process, High Purity Titanium Tetrachloride is a colorless, transparent liquid at room temperature. We offer tailored impurity control and specialized packaging solutions to meet specific industrial requirements.
Commonly known as "Titanium Black", Titanium Suboxide features excellent conductivity, wear resistance, and strong coloring properties.
Dispersing gas-phase nanoscale titanium dioxide powder in water or other solvents forms a well-dispersed, homogenized and stabilized nanoscale titanium dioxide slurry, making it suitable for applications in self-cleaning devices, solar cells, catalysts, desulfurization & denitrification and other fields.
Produced from high-purity titanium tetrachloride by sol-gel-hydrothermal method, anatase titanium dioxide exhibits excellent photocatalytic performance, making it ideal for applications in air purification, antibacterial ceramics, and other fields.
As an essential raw material for producing titanium dioxide, it is a yellowish-green transparent liquid, commonly known as Titanium Tetrachloride Solution.
The solution is a purple liquid that releases heat upon dissolution, forming a reddish-purple solution.
A dense silver layer is formed on the surface of ultrafine copper powder by chemical replacement method, forming silver-copper composite structure, which combines the excellent electrical conductivity of silver with the cost-effectiveness of copper, achieving an interfacial bonding strength of over 200MPa.
A dense silver layer is formed on the surface of ultrafine nickel powder by chemical replacement method,forming silver-nickel composite structure,which combines the excellent electrical conductivity of silver with the corrosion resistance and magnetism of nickel,achieving an interfacial bonding strength of over 200MPa.
Utilizing a wet-process modification with an organic zinc carrier, this grade ensures homogeneous dispersion within the unvulcanized rubber masterbatch.
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