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Micro-porous silica-yttria membrane by sol-gel method: Preparation and characterization

机译:溶胶-凝胶法微孔氧化硅-氧化钇膜的制备与表征

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摘要

Micro-porous yttria doped silica membrane, fabricated on alpha-alumina substrate and gamma-alumina interlayer, has been prepared via the polymeric sol-gel method. In order to investigate the hydrothermal stability of the membrane, silica sols with different amounts of 5, 15 and 25 wt% yttria were prepared. These sols showed particle size distributions in the range of 0.6-3 nm. It was found that the hydrothermal stability of the unsupported silica—15% yttria membrane heat treated at 500 °C is the highest according to the results of FTIR analysis showing the formation of Si-O-Y bonds. XRD data showed thermal stability up to around 800 °C for the unsupported silica membrane with 15% yttria. N_2 adsorption-desorption isotherm confirmed the existence of micro-porous structure for this membrane as BET surface area and average pore size of the unsupported membrane was 286 m~2g~(-1) and 1.9 nm, respectively. Modified substrate surface reduced average roughness and a layer with similar roughness and pore size was achieved. Cross sectional images by FESEM showed the thickness of 680 nm for the obtained membrane.
机译:通过聚合溶胶-凝胶法制备了在α-氧化铝基底和γ-氧化铝中间层上制备的微孔氧化钇掺杂二氧化硅膜。为了研究膜的水热稳定性,制备了具有不同量的5、15和25wt%的氧化钇的硅溶胶。这些溶胶显示出0.6-3nm范围内的粒度分布。根据FTIR分析结果表明形成了Si-O-Y键,发现在500°C下热处理的无载体二氧化硅-15%氧化钇膜的水热稳定性最高。 XRD数据显示,氧化钇含量为15%的无支撑二氧化硅膜的热稳定性高达800°C。 N_2吸附-解吸等温线证实该膜存在微孔结构,因为BET表面积和无支撑膜的平均孔径分别为286 m〜2g〜(-1)和1.9 nm。改性的基材表面降低了平均粗糙度,并获得了具有相似粗糙度和孔径的层。通过FESEM的横截面图像显示所得膜的厚度为680nm。

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