TiO2 Particles
What are TiO2 Particles?
TiO? Particles (titanium dioxide particles) are nanoscale to microscale inorganic particles composed of titanium and oxygen, commonly synthesized via sol-gel (ideal for uniform nanoscale particles), hydrothermal (excellent for crystal phase control), and thermal decomposition (using titanium precursors like tetrabutyl titanate) methods. As a versatile functional material, they possess exceptional photochemical activity (especially anatase-phase TiO?, the most active crystal form), high chemical stability, and excellent optical properties... Their uniform spherical structure (in many formulations), controllable crystal phases (anatase, rutile, etc.), and adjustable surface properties enable them to adapt to a wide range of industrial and scientific application scenarios.
BOT Bioparticles focuses on manufacturing high-quality TiO? Particles with precise particle size control. By utilizing advanced production technologies, their TiO? Particles exhibit consistent particle size distribution and stable performance, meeting the diverse application needs of different industries, from research laboratories to large-scale production lines.
Advantages of TiO2 Particles
Outstanding photocatalytic activity for efficient light-driven reactions
Superior chemical stability and resistance to degradation in harsh environments
Strong ultraviolet absorption capacity, ideal for UV protection applications
High refractive index enhancing optical performance in related products
Good thermal stability, maintaining properties under high - temperature conditions
Easy surface modification to tailor properties for specific applications
Applications of TiO2 Particles
Photocatalytic degradation of organic pollutants in water and air purification
Sunscreen and cosmetic formulations (as UV filters)
Solar energy devices (e.g., photovoltaics and photoelectrochemical cells)
Catalysis (as catalyst or catalyst support in chemical reactions)
Coating industry (to improve durability, scratch resistance, and optical effects)
Composite materials (to boost mechanical, optical, or photocatalytic antibacterial properties—active under light exposure)