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微波-超声法制备a-A1203纳米粉体的研究
引用本文:罗忠义,胡京汉,张歆. 微波-超声法制备a-A1203纳米粉体的研究[J]. 汕头大学学报(自然科学版), 2011, 26(3)
作者姓名:罗忠义  胡京汉  张歆
作者单位:1. 兰州交通大学化学与生物工程学院,甘肃兰州,730070
2. 汕头大学理学院化学系,广东汕头,515063
基金项目:广东省教育部产学研项目,甘肃省高等学校研究生导师科研项目
摘    要:
通过x-射线衍射、扫描电镜及透射电镜,研究了结合微波-超声的溶胶-凝胶法制备a-A1203,纳米粉体,并探讨了该制备条件下“a-A1203,晶种的引入对产物相变的影响.结果表明:该法能制备出外观呈球形、粒径分布比较均匀、粒径约15nm,的“a-A1203,,且实验快速、简便;而引入a-A1203晶种,能促进θ-A1203,向a-A1203,转变,并能有效降低产物相变温度,当引入量为2%时,1000℃煅烧并恒温2}l的产物全部为a-A1203

关 键 词:微波  超声  溶胶一凝胶法  d.AI:0  纳米粉体  XRD

The Preparation of a-A1203 Nano Powder Combined with Microwave and Ultrasonic
Abstract:
Through the X-ray diffraction, scanning electron microscope, energy spectrum and transmission electron microscope analysis, studied the alpha A1203 powders diameler size by sol-gel method combined with microwave-ultrasound, and probed into lhe preparation conditions calcining temperature, alpha A1203 seed introduction on product phase change influence. The results show that the experimental method is rapid and simple, which can prepare alpha A1203 powder its appearance is spherical, particle size ,listribution is evener, size is about 15 nm, introducing the seed can cff'cctivcly rcducc the product phasechange temperatures, and promote transitional A1203 to translbrm inlo alpha alumina. While the seed applied amount, of 2%, 1 000 ℃ ,'aicining tcmpcraturc and constant temperature 2 h, product can completely transformed int,, alpha A1203 nano powder.
Keywords:microwave  uhrasonic  sol-gcl method  nano-alumina  XRI)
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