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Titanium dioxide (TiO2) is the most common titanium compound, and its function as a photocatalytic antimicrobial agent is supported by empirical evidence. Titanium compounds also contribute to the development of catalytic activity in microporous materials.
Titan carbide, Titan carbonitride, Titan nitride, Titan oxide, Titan diboride, Titan zirconium oxide, Titan(IV)-Oxyacetylacetonat, Titan disilicide (TiSi2) Powder, Strontium titanate Powder
Review our selected range of Titan compounds and catalysts. They are designed to support industrial processes, advance scientific applications and utilise the physical properties of Titan.
Titan carbide (TiC): Researchers investigate Titan carbide. It is tested for hardness and wear resistance. Its applications include cutting tools, coatings and ceramics.
Titan carbonitride (TiCN): This compound is measured for hardness and thermal stability. It is used in cutting tools, wear‐resistant coatings and tribological applications.
Titan nitride (TiN): This material is applied as a coating. Its physical properties meet established criteria in cutting tools, automotive components and decorative coatings.
Titan oxide (TiO2): It is used in various applications, including pigments, cosmetics, photocatalysis and electronic devices. Its performance is validated by tests.
Titan diboride (TiB2): It is evaluated for hardness and electrical conductivity. It is applied in electronics, aerospace and high‐performance ceramics.
Titanium Zirconium Oxide: This composite material undergoes quantitative analysis. Its applications include catalysis, ceramics and electronics.
Titan(IV)-Oxyacetylacetonat: It is a precursor compound utilised in chemical vapour deposition and thin film production.
Titan disilicide (TiSi2) Powder: It is evaluated for electrical conductivity and thermal stability. It is used in electronics and semiconductor manufacturing.
Strontium titanate Powder: This compound is assessed for ferroelectric and dielectric properties. It is used in electronic ceramics, sensors and energy storage devices.
Diverse Applications: Our Titan compounds and catalysts serve in coatings, ceramics, catalysis and electronics. Each application is supported by experimental data.
Quality Assurance: Each product undergoes strict quality assessment. Testing confirms material purity, verified properties and performance that meet prescribed criteria.
Technical Expertise: Experts in materials science and chemistry provide support for product selection and application. Their advice is based on quantitative evaluation.
Innovation and Performance: Our Titan compounds and catalysts facilitate improvements in process efficiency. They contribute to measurable performance gains in advanced materials sectors.
Global Distribution: Our products are distributed internationally. Logistic channels ensure access, scheduled deliveries and dedicated customer service.
Coatings and Ceramics: Apply Titan compounds and catalysts in wear‐resistant coatings, high‐performance ceramics and electronic components.
Catalysis and Electronics: Utilize these materials in catalytic processes, semiconductor production and electronic devices.
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