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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Counter diffusion self assembly synthesis of ordered mesoporous silica membranes in straight pore supports
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Counter diffusion self assembly synthesis of ordered mesoporous silica membranes in straight pore supports

机译:直孔载体中有序介孔二氧化硅膜的反扩散自组装合成

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Ordered mesoporous silica membranes in macroporous supports were synthesized by a novel acid catalyzed counter diffusion self assembly method. Mesoporous silica was grown in the pores of the support using tetrabutylorthosilicate and cetyltrimethylammonium bromide as the silica source and surfactant, respectively. The supports used were straight pore, track-etch polycarbonate membranes. Hydrophobic supports with a pore diameter of 5 μm and hydrophilic supports with a pore diameter of 8 μm were used. The grown silica plugs had a highly ordered structure as seen by XRD and TEM studies, with a high surface area of around 990 m2/g and a pore diameter of 2.7 nm. SEM studies and oxygen permeation experiments at constant transmembrane pressure were conducted to assess membrane quality. There was a two order magnitude decrease in the permeance after counter diffusion self assembly growth, showing that good quality membranes were synthesized. The use of hydrophobic supports, support placement and evaporation controlled self assembly are the key factors for the successful formation of these membranes by the CDSA approach.
机译:通过新型的酸催化反扩散自组装方法合成了大孔载体中的有序介孔二氧化硅膜。使用原硅酸四丁酯和十六烷基三甲基溴化铵分别作为二氧化硅源和表面活性剂,在载体的孔中生长介孔二氧化硅。所用的载体是直孔,径迹蚀刻聚碳酸酯膜。使用孔径为5μm的疏水性载体和孔径为8μm的亲水性载体。如通过XRD和TEM研究所见,生长的二氧化硅塞具有高度有序的结构,具有约990m2 / g的高表面积和2.7nm的孔径。在恒定的跨膜压力下进行了SEM研究和氧气渗透实验,以评估膜的质量。在反向扩散自组装生长之后,渗透率降低了两个数量级,表明合成了高质量的膜。疏水载体的使用,载体的放置和蒸发控制的自组装是通过CDSA方法成功形成这些膜的关键因素。

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