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Alumina porous nanomaterials obtained by colloidal processing using D-fructose as dispersant and porosity promoter

机译:以D-果糖为分散剂和孔隙率促进剂通过胶体处理获得的氧化铝多孔纳米材料

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摘要

Recently, great effort has been devoted to obtain porous materials with customized pore size distribution, high surface area and submicrometer sized microstructures or nanostructures. In this work, the viability of colloidal processing routes to obtain porous bulk ceramics using alumina nanopowders and D-fructose as a dispersant and a porosity former has been explored.The rheological behaviour of nanosuspensions was studied in order to assure their stability and to analyse the influence of different parameters (solids loading, fructose content, pH, sonication time). Mesoporous green bodies were obtained by slip casting with D-fructose in concentrations ranging from 5 to 50 wt%. The drying and burning-out conditions were determined by DTA-TG measurements and the sintering cycles were selected from the dynamic sintering curve. Sintered alumina materials with high porosity (>60%), open microstructures, submicrometer sized porosity (d_p = 140-210 nm) and grain size lower than 500 nm, were obtained for pieces sintered at temperatures of 1300 and 1400 °C. The influence of different processing parameters on the porosity and the microstructure of the sintered materials is discussed.
机译:近来,已经付出巨大的努力来获得具有定制的孔径分布,高表面积和亚微米尺寸的微结构或纳米结构的多孔材料。在这项工作中,探索了使用氧化铝纳米粉和D-果糖作为分散剂和孔隙形成剂的胶体加工路线获得多孔体陶瓷的可行性。不同参数(固体含量,果糖含量,pH,超声处理时间)的影响。通过用D-果糖以5至50wt%的浓度滑动浇铸而获得中孔生坯。通过DTA-TG测量确定干燥和烧尽条件,并从动态烧结曲线中选择烧结周期。对于在1300和1400℃的温度下烧结的块,获得了具有高孔隙率(> 60%),开放的微结构,亚微米级孔隙率(d_p = 140-210 nm)和晶粒尺寸小于500 nm的烧结氧化铝材料。讨论了不同工艺参数对烧结材料孔隙率和微观结构的影响。

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