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稳恒磁场下水热法制备钡铁氧体
引用本文:徐斌,钟云波,傅小明,任忠鸣.稳恒磁场下水热法制备钡铁氧体[J].高等学校化学学报,2011,32(1):16-22.
作者姓名:徐斌  钟云波  傅小明  任忠鸣
作者单位:上海大学上海市现代冶金与材料制备重点实验室;
基金项目:上海市科委国际合作项目(批准号:075207015); 国家自然科学基金(批准号:51034010); 上海市科委重点基础研究项目(批准号:08JC1410000)资助
摘    要:利用XRD,SEM,TEM和振动样品磁强计(VSM)等检测手段对不同磁场强度下水热法制备的钡铁氧体粉末进行了分析.实验结果表明,无磁场下,150℃时得到的产物为BaFe2O4颗粒,而180℃时产物为片状BaFe12O19施加磁场后,150和180℃下水热反应产物都为棒状BaFe12O19随着磁感应强度的增加,水热反应产...

关 键 词:磁场  钡铁氧体  水热法  磁性能  磁吉布斯自由能
收稿时间:2010-06-10

Hydrothermal Synthesis of Ba-ferrite in Steady Magnetic Field
XU Bin,ZHONG Yun-Bo,FU Xiao-Ming,REN Zhong-Ming.Hydrothermal Synthesis of Ba-ferrite in Steady Magnetic Field[J].Chemical Research In Chinese Universities,2011,32(1):16-22.
Authors:XU Bin  ZHONG Yun-Bo  FU Xiao-Ming  REN Zhong-Ming
Institution:XU Bin,ZHONG Yun-Bo,FU Xiao-Ming,REN Zhong-Ming(Shanghai Key Laboratory of Modern Metallurgy and Material Processing,Shanghai University,Shanghai 200072,China)
Abstract:By Using XRD, SEM, TEM, and VSM methods, the shape, micro structure and magnetic property of the barium ferrite powder prepared by hydrothermal synthesized in different magnetic field (reactive temperature: 150℃ and 180℃) were discussed . It was shown that, BaFe2O4 powder can be prepared at the reaction temperature of 150℃ without magnetic field, while at the reactive temperature of 180℃ the powder are composed of BaFe12O19 with sheet shape. While with the magnetic field imposed, all the powder are composed of rod-like BaFe12O19 at the reactive temperature of both 150℃ and 180℃. With the increase of magnetic flux density, the proportion of rod-like BaFe12O19 also increased. When the magnetic flux density reached 10T, single-crystal BaFe12O19 with the diameter of about less than 100nm and length of tens of microns has been obtained. The products obtained by hydrothermal reaction under different magnetic flux are all small size and showed paramagnetic property. Thermodynamic calculation results show that with the application of magnetic field, the magnetic Gibbs free energy of hydrothermal reaction reached hundreds or even thousands of kJ/mol. So it changed the hydrothermal reaction in the thermodynamic aspect, which made the hydrothermal reaction turn to generate the product with higher susceptibility.
Keywords:Magnetic field  Ba-ferrite  Hydrothermal reaction  Magnetic property  Magnetic Gibbs free energy  
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