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微波-凝胶法合成NdCoO_3纳米粒子 被引量:8
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作者 宫晓杰 李丽华 +2 位作者 邵海 李秀萍 张金生 《辽宁石油化工大学学报》 CAS 2005年第2期29-31,共3页
 以硝酸钴、硝酸钕为原料,柠檬酸为络合剂,氨水作反应介质,在微波辐照下,加速溶胶的形成,并采用远红外辐射干燥箱制得复合氧化物的前驱体。采用热重及差热分析法对前驱体进行分析,用马弗炉分别在不同温度下煅烧得黑色粉体。采用X射线...  以硝酸钴、硝酸钕为原料,柠檬酸为络合剂,氨水作反应介质,在微波辐照下,加速溶胶的形成,并采用远红外辐射干燥箱制得复合氧化物的前驱体。采用热重及差热分析法对前驱体进行分析,用马弗炉分别在不同温度下煅烧得黑色粉体。采用X射线衍射和红外光谱等现代分析测试手段对粉体的结构、粒径进行了分析和表征。并将溶胶-凝胶法在800℃制得样品的X射线衍射谱图与微波-凝胶法在相同温度下制得样品的X射线衍射谱图相比较。结果表明,微波-凝胶法在较短的时间(10min)内即生成了钙钛矿型稀土复合氧化物NdCoO3纳米粒子,而溶胶-凝胶法生成相同的复合氧化物则需要2h,体现了微波加热能促进化学反应速率,提高热能利用率。 展开更多
关键词 微波-凝胶法 ndcoo3纳米粒子 合成
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Salt-Assisted Combustion Synthesis of NdCoO_3 Nanoparticles and Their Catalytic Properties in Thermal Decomposition of Ammonium Perchlorate
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作者 陈伟凡 刘磊力 +2 位作者 李凤生 李永绣 李慧泉 《Journal of Rare Earths》 SCIE EI CAS CSCD 2007年第S1期21-26,共6页
Highly dispersed perovskite NdCoO3 nanoparticles were prepared by a novel salt-assisted combustion process. The effects of NaCl content and calcination temperature on the characteristics of the products were character... Highly dispersed perovskite NdCoO3 nanoparticles were prepared by a novel salt-assisted combustion process. The effects of NaCl content and calcination temperature on the characteristics of the products were characterized by X-Ray Diffraction (XRD), Transmission Electron Microscopy (TEM) and BET surface area measurement. The facile introduction of NaCl in the conventional combustion synthesis process was found to result in the formation of well-dispersed perovskite nanoparticles and increase specific surface areas of the resultants from 1.7 to 43.2 m2·g-1. The catalytic properties of the typical NdCoO3 samples for thermal decomposition of ammonia perchlorate (AP) and their correlation with the NdCoO3 microstructure were investigated by Differential Scanning Calorimetry (DSC). The DSC results indicate that the addition of the amorphous NdCoO3 nanoparticles to AP incorporates two small exothermic peaks of AP into a strong exothermic peak, decreases the temperature of the AP exothermic peak to 314.0 ℃ by reduction of 138.3 ℃ and increases the apparent decomposition heat from 515 J·g-1 to over 1441 J·g-1, showing the intense catalytic activity for thermal decomposition of AP. It is also clear that the catalytic activity of the resultant NdCoO3 is related to their microstructure. According to Kissinger′s method, the kinetics parameters of the thermal decomposition of AP catalyzed by the as-prepared NdCoO3 samples were calculated to account for the order of their catalytic activity. 展开更多
关键词 salt-assisted combustion synthesis ndcoo_3 nanoparticles MICROSTRUCTURE ammonium perchlorate thermal decomposition catalytic properties rare earths
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