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MASS PRODUCTION AND FILM THICKNESS CONTROL OF MESO POROUS SILICA THIN FILMS

机译:Meso多孔二氧化硅薄膜的批量生产和胶片厚度控制

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Mesoporous silica (referred to as MPS), which has pores of hexagonal or cubic structure of several nm to several tens of nm on the surface, is attracting attention as a new material. MPS has a very large specific surface area, so it is used as an adsorbent for gas and water vapor, as a moisture absorbent, and as a separating material. Transparent MPS is also expected to be an optical functional material. MPS thin film is expected to be used as a thin film as an application example. Since MPS thin film can be used in various applications, it will be further developed by mass production. Leads to Therefore, in this study, mass production of MPS thin films and controlled the film thickness was studied. Roll-to-roll (referred to as R2R) production method and a micro gravure printing method was adopted as a method of mass production: transporting polypropylene film and coating on it. As a result, the MPS thin film prepared in this study had a pore structure, it was confirmed that the film thickness could be controlled by changing the peripheral speed ratio. It is considered that the size of the liquid pool between the coating rolls changed. The size and arrangement of the pores could be confirmed by FE-SEM observation.
机译:介孔二氧化硅(称为MPS),其在表面上具有几个NM至几十个NM的六边形或立方结构的孔,是作为一种新材料的关注。 MPS具有非常大的表面积,因此它用作气体和水蒸气的吸附剂,作为水分吸收剂,以及作为分离材料。透明MPS还预计也是光学功能材料。 MPS薄膜预计将用作薄膜作为应用示例。由于MPS薄膜可用于各种应用中,因此将通过大规模生产进一步开发。因此,在本研究中,研究了MPS薄膜的大规模生产并控制了膜厚度。采用卷 - 卷(称为R2R)制备方法和微凹版印刷方法作为大规模生产的方法:将聚丙烯薄膜和涂层输送到其中。结果,本研究中制备的MPS薄膜具有孔结构,证实可以通过改变外周速度比来控制膜厚度。认为涂层辊之间的液体池的尺寸变化。孔的尺寸和排列可以通过Fe-SEM观察确认。

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