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Synthesis and Characterization of Alumina Naeoparticles by Igepal CO-520 Stabilized Reverse Micelle and-Sol-Gel Processing

机译:Igepal CO-520稳定反胶束和-Sol-Gel法合成氧化铝纳米颗粒及其表征

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摘要

Nanosized alumina powders have been prepared via reverse micelle and sol-gel processing. By stepwise hydrolysis using aqueous ammonia as the precipitant, hydroxide precursor was obtained from nitrate solutions dispersed in the nanosized aqueous domains of microemulsion consisting of cyclohexane as the oil phase, poly(oxyethylene) nonylphenyl ether (Igepal CO-520) as the non-ionic surfactant, and an aqueous solution containing aluminium nitrate as the water phase. The synthesized and calcined powders were characterized by thermogravimetry-differential thermal analysis, transmission electron microscopy, and scanning electron microscopy. The XRD analysis showed that the complete transformation from gamma-Al_2O_3 nanocrystalline to alpha-Al_2O_3 was observed at 1100 deg C. The resulting alumina nanopowder exhibits particle agglomerates of 135-200nm in average diameter occur when they calcined at 1200 deg C. The average particle size was found to increase with increase in water to surfactant (R) molar ratio.
机译:纳米氧化铝粉已通过反胶束和溶胶-凝胶工艺制备。通过使用氨水作为沉淀剂逐步水解,从分散在以环己烷为油相,聚(氧乙烯)壬基苯基醚(Igepal CO-520)为非离子型微乳液的纳米级水域中的硝酸盐溶液中获得氢氧化物前体。表面活性剂和含有硝酸铝作为水相的水溶液。通过热重-差热分析,透射电子显微镜和扫描电子显微镜对合成和煅烧的粉末进行表征。 XRD分析表明,在1100℃下观察到了从γ-Al_2O_3纳米晶体到α-Al_2O_3的完全转变。所得到的氧化铝纳米粉末在1200℃下煅烧时平均粒径为135-200nm。发现尺寸随着水与表面活性剂(R)的摩尔比的增加而增加。

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