Low refractive layer and anti-reflective film comprising the same (as amended)
US-2018088254-A1 · Mar 29, 2018 · US
US10793678B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10793678-B2 |
| Application number | US-201615544875-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 19, 2016 |
| Priority date | Jan 19, 2015 |
| Publication date | Oct 6, 2020 |
| Grant date | Oct 6, 2020 |
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This invention relates to a composite material comprising a core comprising an organosilica such as a polyhedral oligomeric silsesquioxane (POSS) and a functionalized elastomeric polymer such as poly(n-butyl acrylate) bonded onto said core. The elastomer is preferably functionalised with an amine moiety. The present invention also relates to a polymer comprising a resin such as Bisphenol A diglycidylether (DGEBA) and the aforementioned composite material, and a method for making the composite material. The composite material can improve both the material strength and material toughness of the polymer into which it is mixed.
Opening claim text (preview).
What is claimed is: 1. A composite material comprising a core and an amine functionalized elastomeric polymer bonded onto the core, wherein the core comprises octahedral oligomeric silsesquioxane, and wherein the elastomeric polymer is poly(n-butylacrylate), and wherein the composite material is obtained by: providing a core comprising octa(3-hydroxy-3-methylbutyldimethylsiloxy)-POSS; activating the core by converting the hydroxyl group of octa(3-hydroxy-3-methylbutyldimethylsiloxy)-POSS to a bromo group; contacting the activated core comprising octabromopropionyl polyoctahedral silsesquioxane with an elastomeric polymer of poly(n-butylacrylate), and functionalizing the elastomeric polymer with a reactive functional group. 2. The composite material according to claim 1 , wherein the functionalized elastomeric polymer is covalently bonded onto the core. 3. A polymer comprising a resin and a composite material comprising a core and an amine functionalized elastomeric polymer bonded onto the core, wherein the core comprises octahedral oligomeric silsesquioxane, and wherein the elastomeric polymer is poly(n-butylacrylate), wherein the composite material is obtained by: providing a core comprising octa(3-hydroxy-3-methylbutyldimethylsiloxy)-POSS; activating the core by converting the hydroxyl group of octa(3-hydroxy-3-methylbutyldimethylsiloxy)-POSS to a bromo group; contacting the activated core comprising octabromopropionyl polyoctahedral silsesquioxane with an elastomeric polymer of poly(n-butylacrylate), and functionalizing the elastomeric polymer with a reactive functional group. 4. The polymer according to claim 3 , wherein the composite material is present in the polymer in an amount of up to 40 wt % or in the range of 0.1 wt % to 15 wt %. 5. The polymer according to claim 3 , wherein the resin comprises polymerizable groups selected from the group consisting of amine, epoxy, ester, hydroxyl, vinyl, urethane, isocyanate and any mixture thereof or wherein the resin comprises epoxy groups. 6. The polymer according to claim 3 , wherein the resin is bisphenol A diglycidylether. 7. A method of synthesizing a composite material comprising a core and an amine functionalized elastomeric polymer bonded onto the core, wherein the elastomeric polymer is a thermoset elastomer, comprising: providing a core comprising octa(3-hydroxy-3-methylbutyldimethylsiloxy)-POSS; activating the core by converting the hydroxyl group of octa(3-hydroxy-3-methylbutyldimethylsiloxy)-POSS to a bromo group; contacting the activated core comprising octabromopropionyl polyoctahedral silsesquioxane with an elastomeric polymer of poly(n-butylacrylate), and functionalizing the elastomeric polymer with a reactive amine functional group. 8. The method according to claim 7 , wherein the contacting step is performed in the presence of a base. 9. The method according to claim 7 , wherein the contacting step forms a covalent bond between the activated core and the elastomeric polymer. 10. The method according to claim 7 , wherein the functionalizing operation is performed by contacting the elastomeric polymer with cysteamine.
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