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纳米铋掺杂二氧化锡/水性聚氨酯复合材料 被引量:15
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作者 何秋星 胡剑青 涂伟萍 《化工学报》 EI CAS CSCD 北大核心 2007年第11期2920-2925,共6页
以自制纳米铋掺杂二氧化锡(nano-BTO)分散浆料和水性聚氨酯(PU)为原料,采用共混法制备nano-BTO/水性聚氨酯杂合材料。运用zeta电位仪、激光粒度仪和TEM等研究了nano-BTO的zeta电位分布及其分散。结果表明,nano-BTO浆料的等电点在pH=6附... 以自制纳米铋掺杂二氧化锡(nano-BTO)分散浆料和水性聚氨酯(PU)为原料,采用共混法制备nano-BTO/水性聚氨酯杂合材料。运用zeta电位仪、激光粒度仪和TEM等研究了nano-BTO的zeta电位分布及其分散。结果表明,nano-BTO浆料的等电点在pH=6附近;采用硅烷偶联剂KH-550和高分子分散剂DP-518对nano-BTO粉体进行分散处理可获得良好分散性的水性浆料。采用紫外-可见-近红外分光光度计和自制的隔热测试装置等研究了nano-BTO/氨酯杂合材料的力学性能、光学性能和热学性能。结果表明,当nano-BTO含量为1.0%时,涂膜的拉伸强度和断裂伸长率分别达到了9.23MPa、223%,可见光透射率约为70%,其隔热效果同比纯PU膜可降温达8℃以上。 展开更多
关键词 纳米铋掺杂二氧化锡 水性聚氨酯 共混法 ZETA电位
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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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