Modified metal-oxide composite sol, coating composition, and optical member
A coating composition and oxide technology, applied in the direction of tungsten compound, titanium compound, zirconium compound, etc., can solve the problem of thick edge thickness, etc., and achieve the effects of good weather resistance, high transparency, and high refractive index
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reference example 1
[0123] Reference example 1 (preparation of tungstic acid oligomer)
[0124] In a 200-liter stainless steel container, 5.7 kg of sodium tungstate (containing 69.2 mass % WO 3 , Daiichi Raw Element Chemical Industry Co., Ltd.) was diluted in 125 kg of pure water, and then made to flow through a hydrogen-type cation exchange resin (Amber Laite (registered trademark) IR-120B, Olugano Co., Ltd.) Pillar. After the cation exchange, 570 kg of pure water was added to the obtained tungstic acid aqueous solution for dilution, and then 852 g of isopropylamine was added under stirring to obtain a tungstic acid oligomer. The resulting tungstic acid oligomer, WO 3 0.56% by mass, isopropylamine / WO 3 The molar ratio was 0.86.
reference example 2
[0125] Reference example 2 (modulation of antimony pentoxide colloidal particles)
[0126] Add 8.5 kg of antimony trioxide (manufactured in Sanguo, Guangdong, containing 99.5% by mass of Sb) to a 100-liter stainless steel container 2 o 3 ), 41.0kg of pure water and 6.9kg of potassium hydroxide (containing 95% by mass KOH), slowly added 5.7kg of 35% by mass hydrogen peroxide under stirring. The resulting potassium antimonate aqueous solution, as Sb 2 o 5 15.1% by mass, 10.56% by mass as KOH, K 2 O / Sb 2 o 5 The molar ratio is 2.4. The resulting potassium antimonate aqueous solution 62.1kg is diluted to Sb with pure water 2 o 5 It was 2.5% by mass, and then it was made to flow through a column filled with a hydrogen-form cation exchange resin (Amberlite IR-120B, manufactured by Olugano Co., Ltd.). After the cation exchange, 4.5 kg of diisopropylamine was added to the obtained aqueous solution of antimony acid under stirring to obtain an aqueous sol of antimony pentoxide ...
reference example 3
[0127] Reference example 3 (preparation of tungsten oxide-tin oxide-silica composite colloidal particles)
[0128] No. 3 sodium silicate (containing 29.1% by mass SiO 2 , Fuji Chemical Co., Ltd.) 103g was dissolved in 1848g of pure water, and then, sodium tungstate Na 2 WO 4 2H 2 O (containing 69.1% by mass of WO 3 , Daiichi Dien Element Chemical Industry Co., Ltd.) 21.7g and sodium stannate NaSnO 3 ·H 2 O (containing 55.8 mass% SnO 2 , Showa Chemical Industry Co., Ltd. product) 26.9 g. Next, the resulting aqueous solution was passed through a column filled with a hydrogen-form cation exchange resin (Amberlite IR-120B, manufactured by Olugano Co., Ltd.), thereby obtaining 2353 g of an acidic tungsten oxide-tin oxide-silica composite sol ( pH value 1.9, containing 0.6 mass% WO 3 , 0.6% by mass SnO 2 , 1.3% by mass SiO 2 , WO 3 / SnO 2 The mass ratio is 1.0, SiO 2 / SnO 2 The mass ratio was 2.0. ).
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