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首页> 外文期刊>日本セラミックス協会学術論文誌 >透明メソポーラスシリカ薄膜の作製に用いた前駆体溶液の形成過程
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透明メソポーラスシリカ薄膜の作製に用いた前駆体溶液の形成過程

机译:用于制造透明介孔二氧化硅薄膜的前体溶液形成过程

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摘要

Viscosity, conductivity, pH and concentration of silicic acid in a solution of tetraethylorthosilicate (TEOS) -cetyltrimethylammonium bromide (CTAB) -water (H_2O)-nitric acid (HNO_3) system have been measured, and the formation process of a precursor solution for preparing transparent mesoporous silica thin films was postulated. For the precursor solution of TEOS/CTAB/H_2O = 8/1/185 molar ratio, the relationship of viscosity vs. concentration of silica in a solution at aging times of 15 to 23 h showed good linearity with a slope which became steeper with time, while the viscosity of silica remained almost unchanged for aging times of 3 to 11 h. These results showed that the initial stage includes spherical polysilicate and the later stage a linear one. The concentration of silicic acid in precursor solutions showed the maximum at the aging time of about 1.6 h. The conductivity in the precursor solution of TEOS/CTAB/H_2O = 8/1/185 molar ratio was measured, and it slowly decreased with slight fluctuation, exhibiting a the maximum value at the aging time of about 2.5 h. This type of conductivity change suggested that silicic acid or polysilicate interacts with CTAB. The pH of the precursor solution remained unchanged at around 3 throughout the measurement. From these results, the formation process of a precursor solution was assumed as follows; 1st step: cationization of ~+H_3O centre dot Si(OH)_3; 2nd step: complexation of silicic acid cation and CTAB micell; 3rd step: polymerization of silicic acid on CTAB micell; 4th step: separation of CTAB and polysilicate; 5th step: adsorption of CTAB on polysilicate; 6th step: complexation of CTAB and polysilicate; 7th step: formation of hexagonal structure.
机译:粘度,电导率,pH值和在(TEOS)-cetyltrimethylammonium铵(CTAB) - 水(H2O) - 硝酸(HNO_3)系统原硅酸四乙酯的溶液硅酸的浓度进行了测量,和前体溶液的制备过程中形成的透明介孔二氧化硅薄膜的推测。对于TEOS / CTAB / H_2O = 8/1/185摩尔比前体溶液,二氧化硅的粘度对浓度的溶液在15到23小时老化时间的关系表现出良好的线性关系这成为更陡随时间的斜率,而二氧化硅的粘度仍然是老化的3倍到11 H几乎没有变化。这些结果表明,初始阶段包括球形聚硅酸盐和后级的线性之一。于前体溶液的硅酸的浓度下显示出最大在约1.6小时的老化时间。在TEOS / CTAB的前体溶液的电导率/ H_2O = 8/1/185摩尔比进行测定,并将其缓慢地用轻微波动降低,在约2.5小时的老化时间呈现最大值。这种类型的导电率变化的建议以CTAB该硅酸或聚硅酸盐相互作用。该前体溶液的pH值在约3整个测量保持不变。从这些结果,假定的前体溶液的形成过程如下:第一步骤:〜+ H_3O中心点的Si(OH)_3的阳离子;第二步骤:硅酸阳离子和CTAB胶束的络合;第三步:对CTAB胶束硅酸的聚合;第四步骤:CTAB和聚硅酸盐的分离;第五步骤:CTAB上聚硅酸盐吸附;第六步骤:CTAB和聚硅酸盐的络合;第七步:形成六方结构。

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