OPTITE® is a functional composite material that transparently disperses inorganic nanoparticles into organic matrices through our precision synthesis and surface design technologies. We have confirmed that it can simultaneously achieve a high refractive index and high transparency — properties long considered a trade-off — within a single material. Furthermore, by selecting the type of inorganic nanoparticles dispersed, additional functions can be imparted to suit your application. The datasheets and images on this page show representative examples of our titanium dioxide (TiO₂) grades, but the technology is applicable to a wide range of inorganic nanoparticles, including zirconium dioxide (ZrO₂). If you have a material or application in mind, please feel free to contact us — including systems not shown in the list. OPTITE® is supplied as a nanoparticle dispersion or a monomer-containing dispersion, and can be introduced to fit your manufacturing process.
Evaluation conditions common to all data on this page.
The properties shown in each substance card of the compatibility matrix below are representative examples measured under the common conditions above, with the OPTITE® concentration in solids varied from 10 to 80 wt% (reference values).
High refractive index
High transparency
High hardness
Other functions available upon request
All property values on this page are reference values, not guaranteed or specification values. They are representative examples measured by Nano Chemix under the stated evaluation conditions and may vary depending on lot, formulation, and process conditions.
Evaluation samples are currently available for purchase. Volume supply and specifications will be discussed individually based on your evaluation results.
OPTITE® is supplied either as a nanoparticle dispersion (solvent-based) or as a monomer-containing dispersion, depending on the stage of your manufacturing process at which it is introduced. Each form supports different solvents and monomers, which you can browse in the compatibility matrix below, filtered by the form of interest. Please feel free to contact us about materials not listed here.
Nanoparticle dispersion (solvent-based)
Introduction stage: coating processes
Supplied transparently dispersed in organic solvents. Choose a solvent system suited to your coating process.
Monomer-containing dispersion
Introduction stage: monomer stage before curing / molding
Supplied transparently dispersed in acrylate monomers, ready to be incorporated directly into UV- or heat-curing processes.
A list of the solvents and monomers in which transparent dispersion of OPTITE® has been confirmed. Use the buttons or search box below to filter the list. Reference property data will be published as measurements are completed.
Showing 20 items
▼ Click a substance name in the table below to open its property card (TiO₂-based examples) directly beneath that row (click again to close). Each card presents reference property values with the OPTITE® concentration in solids varied from 10 to 80 wt%. (Format example)
| Substance | CAS No. | Dispersion form | Category | Reference data |
|---|---|---|---|---|
| Benzyl acrylate(BA) | 2495-35-4 | Monomer | Monofunctional | Under measurement |
| 2-Hydroxyethyl methacrylate (HEMA) | 868-77-9 | Monomer | Monofunctional | Under measurement |
| Isobornyl acrylate (IBOA) | 5888-33-5 | Monomer | Monofunctional | Under measurement |
| Ethoxylated o-phenylphenol acrylate | TBC | Monomer | Monofunctional | Under measurement |
| 1,6-Hexanediol diacrylate (HDDA) | 13048-33-4 | Monomer | Difunctional | Under measurement |
| Tricyclodecane dimethanol diacrylate | 42594-17-2 | Monomer | Difunctional | Under measurement |
| Ethoxylated bisphenol A diacrylate | TBC | Monomer | Difunctional | Under measurement |
| Trimethylolpropane triacrylate (TMPTA) | 15625-89-5 | Monomer | Trifunctional | Under measurement |
| Pentaerythritol tri- and tetraacrylate (mixture) | 3524-68-3 / 4986-89-4 | Monomer | 3〜Tetrafunctional | Under measurement |
| Pentaerythritol tetraacrylate | 4986-89-4 | Monomer | Tetrafunctional | Under measurement |
| Dipentaerythritol hexaacrylate (DPHA) | 29570-58-9 | Monomer | Hexafunctional | Under measurement |
| Toluene | 108-88-3 | Solvent | Aromatic hydrocarbon | Under measurement |
| Xylene (mixed isomers) | 1330-20-7 | Solvent | Aromatic hydrocarbon | Under measurement |
| Hexane | 110-54-3 | Solvent | Aliphatic hydrocarbon | Under measurement |
| Cyclohexane | 110-82-7 | Solvent | Alicyclic hydrocarbon | Under measurement |
| Ethyl acetate | 141-78-6 | Solvent | Ester | Under measurement |
| Butyl acetate | 123-86-4 | Solvent | Ester | Under measurement |
| Propylene glycol monomethyl ether acetate (PGMEA) | 108-65-6 | Solvent | Glycol ether ester | Under measurement |
| Propylene glycol monomethyl ether (PGME) | 107-98-2 | Solvent | Glycol ether | Under measurement |
| Cyclohexanone | 108-94-1 | Solvent | Ketone | Under measurement |
The datasheets and appearance / TEM images show representative examples of our titanium dioxide (TiO₂) grades. OPTITE®’s dispersion technology is not limited to TiO₂ — it can be applied to a wide range of inorganic nanoparticles, including zirconium dioxide (ZrO₂). If you have a material or application under consideration, please contact us, including systems not on the list. We will propose the optimal dispersion form and evaluation samples.
To request our catalog (technical documents) or to apply for evaluation samples and technical consultation, please use the form below. We also assess dispersibility for systems not on the list.