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超声波—溶胶—凝胶法制备纳米二氧化锡粉末 被引量:21
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作者 王建 李敦钫 管洪涛 《云南冶金》 2002年第4期42-44,共3页
用超声波-溶胶-凝胶法制得了纳米SnO2 粉末。用XRD和TEM等方法对粉末进行表征 ,并研究了超声场、pH值和洗涤方式对产品粒度与团聚的影响。
关键词 超声波 溶胶-凝胶法 纳米二氧化锡粉末
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Synthesis and characterization of bismuth-doped tin dioxide nanometer powders 被引量:6
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作者 何秋星 涂伟萍 胡剑青 《Journal of Central South University of Technology》 EI 2006年第5期519-524,共6页
Bismuth-doped tin dioxide nanometer powders were prepared by co-precipitation method using SnCl4 and Bi(NO3)3 as raw materials. The effects of calcining temperature and doping ratio on the particle size, composition... Bismuth-doped tin dioxide nanometer powders were prepared by co-precipitation method using SnCl4 and Bi(NO3)3 as raw materials. The effects of calcining temperature and doping ratio on the particle size, composition, spectrum selectivity of bismuth-doped tin dioxide and the phase transition of Bi-Sn precursor at different temperatures were studied by means of X-ray diffraction, transmission electron microscopy, ultraviolet-visual-near infrared diffuse reflection spectrum and the thermogravimetric-differential scanning calorimetry. The results show that prepared bismuth-doped tin dioxide powders have excellent characteristics with a single-phase tetragonal structure, good dispersibility, good absorbency for ultraviolet ray and average particle size less than 10 nm. The optimum conditions for preparing bismuth-doped tin dioxide nanometer powders are as follows: calcining temperature of 600℃, ratio of bismuth-doped in a range of 0.10-0.30, and Bi-Sn precursor being dispersed by ultrasonic wave and refluxed azeotropic and distillated with mixture of n-butanol and benzene. The mechanism of phase transition of Bi-Sn precursor is that Bi 3+ enters Sn-vacancy and then forms Sn—O—Bi bond. 展开更多
关键词 bismuth-doped tin dioxide tin dioxide nanometer powders co-precipitation method ultrasonic wave
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