[EN] HIGH-RI SILOXANE MONOMERS, THEIR POLYMERIZATION AND USE<br/>[FR] MONOMÈRES DE SILOXANE À IR ÉLEVÉ, LEUR POLYMÉRISATION ET LEUR UTILISATION
申请人:INKRON OY
公开号:WO2016151192A1
公开(公告)日:2016-09-29
Phenoxyphenylsilane monomers were synthesized and polymerized. The polymers have high refractive indices and excellent UV and thermal stability. Their water and oxygen permeability is lower than commercial phenyl silicone elastomers. They show good compatibility with metal oxide nanoparticles. The polymers of the invention are suitable as LED encapsulant, as light guide material in CMOS image sensors, in OLED devices, lasers and in other optical applications.
Silylierte Polyphenyläther; ihre Darstellung und einige physikalische Eigenschaften
作者:Walter Fink
DOI:10.1002/hlca.19730560127
日期:1973.1.31
Chemical modification of aromatic polyphenyl ethers by silylation (trimethylsilyl, dimethylphenylsilyl, methyldiphenylsilyl and siloxanyl groups), has been investigated and shown to give products with improved low-temperature fluidity without change of thermal stability.
HIGH-RI SILOXANE MONOMERS, THEIR POLYMERIZATION AND USE
申请人:Inkron OY
公开号:EP3271366B1
公开(公告)日:2020-10-14
High-RI siloxane monomers, their polymerization and use
申请人:Inkron Oy
公开号:US20180079761A1
公开(公告)日:2018-03-22
Phenoxyphenylsilane monomers were synthesized and polymerized. The polymers have high refractive indices and excellent UV and thermal stability. Their water and oxygen permeability is lower than commercial phenyl silicone elastomers. They show good compatibility with metal oxide nanoparticles. The polymers of the invention are suitable as LED encapsulant, as light guide material in CMOS image sensors, in OLED devices, lasers and in other optical applications.
[EN] SILOXANE MONOMERS, THEIR POLYMERIZATION AND USES THEREOF<br/>[FR] MONOMÈRES DE SILOXANE, LEUR POLYMÉRISATION ET LEURS UTILISATIONS
申请人:INKRON OY
公开号:WO2018011475A1
公开(公告)日:2018-01-18
Phenoxyphenylsilane monomers were synthesized and polymerized. The polymers have high refractive indices and excellent UV and thermal stability. Their water and oxygen permeability is lower than commercial phenyl silicone elastomers. They show good compatibility with metal oxide nanoparticles. The polymers of the invention are suitable as LED encapsulant, as light guide material in CMOS image sensors, in OLED devices, lasers and in other optical applications.