Wide-ranging applications such as film refractive index adjustment, hard coating, and enhancing contrast effects on resins! Sample sales available!
The "Zirconeo Series" is a zirconia nanoparticle dispersion developed using Aitec's supercritical technology. It excels in compatibility and transparency with resins and also shows excellent compatibility with UV-curable resins. It disperses well in organic solvents. The particle size is below 10nm, and the main crystal structure is tetragonal. It is ideal for optical materials, high refractive index materials, and molding materials. 【Features】 ■ Zirconia nanoparticle dispersion ■ Excellent compatibility with UV-curable resins ■ Excellent mixing ability and transparency with resins ■ Good dispersion in organic solvents ■ Particle size is below 10nm, with a main crystal structure of tetragonal 【Examples of Applications】 Applications for improving refractive index, dental materials, catalysts Examples include optical lenses, optical films, light guide plates, prism sheets, dental materials, and more. * We offer a variety of lineups according to your application. Please feel free to contact us. Samples are also available for sale. We can discuss quantities and other details based on your intended application.
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【Specifications】 ■Product Name: Zirconeo-Sw / Zirconeo-Sk ■Shape: Water / MEK + Methanol ■Particle Content: 30wt% / 30wt% ■Particle Size: 10nm / 10nm ■Main Crystal System: Cubic / Cubic *For more details, please refer to the catalog or feel free to contact us.
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Applications/Examples of results
【Applications】 ■ Optical materials ■ High refractive index materials ■ Refractive index adjusters ■ Dental materials, etc. *For more details, please refer to the catalog or feel free to contact us.
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Our company provides new functional materials such as supercritical water nanoparticle synthesis equipment, supercritical CO2 extraction systems, dry snow cleaning devices using CO2, and nanoparticles, leveraging supercritical fluid technology based on high temperature and high pressure techniques. Utilizing these technologies, we can incorporate various fillers into resins, enabling the provision of new materials with functionalities such as high thermal conductivity and conductive materials. Our applications are expanding to power device materials, battery materials like solar cells, materials for printed electronics, and high refractive index materials.