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氟对CaO—CaF2—SiO2和CaO—CaF2—SiO2—FeOx玻璃硅酸盐网络体的影响
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作者 M.HAYASHI 韩淑霞 段祥光 《现代冶金(内蒙古)》 2003年第2期70-77,共8页
通过使用X射线光电子分光仪(XPS)和穆斯堡尔分光检测仪对CaO-SiO2-CaF2和CaO-SiO2-CaF2-FeOx两种玻璃质进行了检测,研究F的化学性能和加入F后对硅酸盐网络体聚合度的影响。Fls XPS衍射图表明,F易与C8结合而不是Si,从CaO-SiO2-CaF2玻... 通过使用X射线光电子分光仪(XPS)和穆斯堡尔分光检测仪对CaO-SiO2-CaF2和CaO-SiO2-CaF2-FeOx两种玻璃质进行了检测,研究F的化学性能和加入F后对硅酸盐网络体聚合度的影响。Fls XPS衍射图表明,F易与C8结合而不是Si,从CaO-SiO2-CaF2玻璃体的Ols XPS衍射图和CaO-SiO2-CaF2-FeOx玻璃体的穆斯堡尔衍射图的Fe^2+与Fe^3+的比值分析表明,加入CaF2对两种玻璃硅酸盐网络体没有解聚作用。 展开更多
关键词 玻璃 硅酸盐网络体 x射线光电子分光仪 化学性能 聚合度 穆斯堡尔分光检测仪 炼钢 炉渣稀释剂
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Research on Preparation of the Composite Materials LiFePO4-Li3V2(PO4)3
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作者 Haoyu JIANG Jianrong Xiao Hang Zhao 《International Journal of Technology Management》 2014年第4期98-100,共3页
The article developed a lithium iron phosphate - composite cathode material of lithium vanadium phosphate. Using X-ray diffraction (XRD), electronic scanning electron microscopy surface (SEM), laser particle size ... The article developed a lithium iron phosphate - composite cathode material of lithium vanadium phosphate. Using X-ray diffraction (XRD), electronic scanning electron microscopy surface (SEM), laser particle size analyzer, carbon and sulfur analyzer, and X-ray photoelectron spectroscopy, etc. for the prepared composites were characterized and found the material is mainly crystalline structure of lithium iron phosphate, and lithium vanadium, wherein a small amount of impurities; finer particle size of the material, the particle size distribution is narrow and uniform, smooth particle surface, wrapping in good carbon composite with other materials prepared in comparison the case has a carbon content of about optimum conductivity. To assemble the material into a cell after the 0.1C, IC, 2C when and 5C, the first discharge capacity were 160,145,127 and 109 mA·h·g^-1, after 50 cycles, the discharge capacity of 162, respectively, 144,126 and 106 mA·h·g^-1, which showed good rate characteristics and cycle characteristics. 展开更多
关键词 Lithium iron phosphate lithium vanadium phosphate GRAPHENE composite materials
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