Siloxane coating material, optical articles and process for the production of siloxane coating materials
A siloxane-based, optical product technology, applied in chemical instruments and methods, optics, optical components, etc., can solve the problems of storage stability, lower refractive index of transparent coating film, lower hardness and other problems, and achieve excellent anti-reflection Excellent durability, storage stability, excellent scratch resistance
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Embodiment 1
[0148] 95.2 g (0.7 mol) of methyltrimethoxysilane and 65.4 g (0.3 mol) of trifluoropropyltrimethoxysilane were dissolved in 300 g of propylene glycol monomethyl ether and 100 g of isopropanol. In this solution, the silicon oxide microparticle dispersion (isopropanol dispersion type, solid content concentration of 20.5%, Catalyst Chemical Industry Co., Ltd.) 297.9 g, 54 g of water, and 1.8 g of formic acid. After dropping, heat the resulting solution at a bath temperature of 40°C for 2 hours, then heat the solution at a bath temperature of 85°C for 2 hours, raise the internal temperature to 80°C, heat for 1.5 hours, and then cool to room temperature to obtain polymer solution A.
[0149] To the obtained polymer solution A, 4.8 g of tris(acetoacetate)aluminum (trade name Aluminum Chelate A(W), manufactured by Kawaken Fine Chemicals Co., Ltd.) was dissolved in 125 g of methanol. As an aluminum-based curing agent, 1,500 g of isopropyl alcohol and 250 g of propylene glycol monome...
Embodiment 2
[0154] 95.2 g (0.7 mol) of methyltrimethoxysilane and 65.4 g (0.3 mol) of trifluoropropyltrimethoxysilane were dissolved in 300 g of propylene glycol monomethyl ether and 100 g of isopropanol. In this solution, a sol of silicon oxide microparticles with a number average particle diameter of 12 nm and no cavity inside (trade name IPA-ST, manufactured by Nissan) dispersed in isopropanol was dropped while stirring while keeping the reaction temperature not exceeding 30°C. Manufactured by Chemical Industry Co., Ltd., 730 g of solid content (30%), 60 g of water, and 2 g of formic acid. After dropping, heat the resulting solution at a bath temperature of 40°C for 2 hours, then heat the solution at a bath temperature of 85°C for 2 hours, raise the internal temperature to 80°C, heat for 1.5 hours, and then cool to room temperature to obtain polymer solution B.
[0155] To the obtained polymer solution B, 4.8 g of tris(acetoacetate)aluminum (trade name Aluminum Chelate A (W), manufact...
Embodiment 3
[0158] Dissolve 109.0 g (0.8 mol) of methyltrimethoxysilane, 56.8 g (0.1 mol) of heptadecafluorodecyltrimethoxysilane, and 12 g (0.1 mol) of dimethyldimethoxysilane in 300 g of diacetone alcohol, Isopropanol 100g. In this solution, a sol of silicon oxide microparticles with a number average particle diameter of 12 nm and no cavity in the interior dispersed in methyl isobutyl ketone (trade name MIBK- ST, manufactured by Nissan Chemical Industry Co., Ltd., 250 g of solid content (30%), 60 g of water and 2 g of acetic acid. After dropping, heat the resulting solution at a bath temperature of 40°C for 2 hours, then heat the solution at a bath temperature of 85°C for 2 hours, raise the internal temperature to 80°C, heat for 1.5 hours, and then cool to room temperature to obtain polymer solution C.
[0159] To the obtained polymer solution C, a substance obtained by dissolving 3.8 g of magnesium bis(ethyl acetoacetate) in 250 g of methanol was added as a magnesium-based curing age...
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