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首页> 外文期刊>Journal of Sol-Gel Science and Technology >A novel synthesis route of titania-alumina composite aerogels with potassium titanate as the precursor
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A novel synthesis route of titania-alumina composite aerogels with potassium titanate as the precursor

机译:用钛酸钾作为前体的二氧化钛 - 氧化铝复合气凝胶的一种新型合成途径

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摘要

In this paper, titania-alumina composite aerogels containing different contents of potassium titanate were synthesized by sol-gel process and supercritical ethanol drying with potassium titanate as the precursor. Moreover, the effects of potassium titanate addition on the structures and properties of composite aerogels were investigated. The investigation results showed that contents of potassium titanate significantly affected the structures and morphologies of composite aerogels. When potassium titanate content was low, potassium titanate could be decomposed into titania and potassium ions could be removed by ion exchange. Fibriform alumina and sheet titania nanoparticles were aggregated to form flower-like or rod-like clusters. However, the high content of potassium titanate resulted in the residues of unreactive potassium titanate. Meanwhile, excessive titania easily converted the cluster shape into the spherical shape, and titania particles grew and stretched out of the spherical clusters to form titania sheets, thus displaying the cactus-like morphology. In composite aerogels, alumina nanoparticles could hinder the sintering of titania particles and retard the anatase-to-rutile phase transformation until the temperature reached 1000 A degrees C, thereby improving the heat resistance of anatase titania. The composite aerogels showed the high surface area and low thermal conductivity and might be applied as thermal insulation materials or catalysis supports.
机译:本文通过溶胶 - 凝胶加工和钛酸钾作为前体,通过溶胶 - 凝胶加工和超临界乙醇干燥合成含有不同钛酸钾含量的二氧化钛复合气凝胶。此外,研究了钛酸钾添加对复合气凝胶结构和性能的影响。调查结果表明,钛酸钾含量显着影响了复合气凝胶的结构和形态。当钛酸钾含量低时,钛酸钾可以分解成二氧化钛,并且可以通过离子交换除去钾离子。纤维状氧化铝和片状纳米胺纳米颗粒被聚集以形成花状或棒状簇。然而,钛酸钾的高含量导致不反应的钛酸钾残留物。同时,过量的二氧化钛容易将簇形状转化为球形形状,并且二氧化钛颗粒成长并延伸出球形簇以形成二氧化钛板,从而显示仙人掌状的形态。在复合气凝胶中,氧化铝纳米粒子可能阻碍二氧化钛颗粒的烧结,并将锐钛矿对金红石相转变拉伸,直至温度达到1000℃,从而提高锐钛矿二氧化钛的耐热性。复合气凝胶显示出高表面积和低导热率,并且可以用作隔热材料或催化支撑件。

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