首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Effect of the pore surface modification of an inorganic substrate on the plasma-grafting behavior of pore-filling-type organic/inorganic composite membranes
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Effect of the pore surface modification of an inorganic substrate on the plasma-grafting behavior of pore-filling-type organic/inorganic composite membranes

机译:无机基质的孔表面改性对孔填充型有机/无机复合膜的等离子接枝行为的影响

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We have investigated the effect of the surface state and surface treatment of the pores of an inorganic substrate on the plasma-grafting behavior of pore-filling-type organic/inorganic composite membranes. Shirasu porous glass (SPG) was used as the inorganic substrate, and methyl acrylate was used as the grafting monomer. The grafting rate increased as the density of silanol on the SPG substrate increased. This result suggests that radicals are generated mainly at the silanol groups on the pore surface by plasma irradiation. The SPG substrates were treated with silane coupling agents used to control the mass of organic material bonded to the pore surface. The thickness of the grafted layer became thinner as the mass of organic material bonded to the pore surface of SPG increased. This decrease in the thickness of the grafted layer could be explained by the decrease in the penetration depth or vacuum ultraviolet rays contained in plasma having a wavelength of less than 160 nm that generated radicals in the pores of the substrate. The thickness of the grafted layer inside the SPG substrates could be controlled through the control of the mass of organic material bonded to the pore surface of the SPG substrate. (c) 2005 Wiley Periodicals, Inc.
机译:我们已经研究了无机基质的孔的表面状态和表面处理对孔填充型有机/无机复合膜的等离子接枝行为的影响。使用Shirasu多孔玻璃(SPG)作为无机基材,使用丙烯酸甲酯作为接枝单体。接枝率随SPG基材上硅烷醇密度的增加而增加。该结果表明自由基主要通过等离子体辐射在孔表面的硅烷醇基团上产生。用硅烷偶联剂处理SPG基材,该偶联剂用于控制键合到孔表面的有机材料的质量。随着结合到SPG的孔表面上的有机材料的质量增加,接枝层的厚度变得更薄。接枝层厚度的这种减小可以通过包含在具有小于160nm的波长的等离子体中的穿透深度或真空紫外线的减小来解释,该等离子体在基板的孔中产生自由基。可以通过控制结合到SPG衬底孔表面的有机材料的质量来控制SPG衬底内部的接枝层的厚度。 (c)2005年Wiley Periodicals,Inc.

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