采用溶胶-凝胶法制备Y0.06Sr0.94Ti1-xFexO3-δ(x为原子分数。x=0.2,0.3,0.4,0.5)混合导体材料,用X射线衍射(XRD)分析该材料的物相,采用交流阻抗法和电子阻塞电极法分别测定其总电导率与离子电导率,研究铁含量对Y0.06Sr0.94T...采用溶胶-凝胶法制备Y0.06Sr0.94Ti1-xFexO3-δ(x为原子分数。x=0.2,0.3,0.4,0.5)混合导体材料,用X射线衍射(XRD)分析该材料的物相,采用交流阻抗法和电子阻塞电极法分别测定其总电导率与离子电导率,研究铁含量对Y0.06Sr0.94TiO3混合导体材料的结构及电性能的影响。结果表明该材料属于单一立方相钙钛矿结构;在测试温度范围内,Y0.06Sr0.94Ti1-xFexO3-δ的总电导率和离子电导率都随温度升高而增大;随 Fe 掺杂量增加,总电导率和离子电导率都增大。在800℃下Y0.06Sr0.94Ti1-xFexO3-δ(x=0.2,0.3,0.4,0.5)的总电导率为0.019~0.12 S/cm,离子电导率为0.0106~0.0153 S/cm。根据传导活化能可以看出,x从0.3增加到0.4时材料的传导机制发生改变。展开更多
A temperature stable Li2Zn0.95(SrxCa1-x)0.05Ti3O8(0≤x≤1)ceramics were fabricated using a conventional solid-state route sintered at 1100℃for 4 h.The XRD results indicate that the main phase Li2ZnTi3O8 and secondary...A temperature stable Li2Zn0.95(SrxCa1-x)0.05Ti3O8(0≤x≤1)ceramics were fabricated using a conventional solid-state route sintered at 1100℃for 4 h.The XRD results indicate that the main phase Li2ZnTi3O8 and secondary phase including SrxCa1-xTiO3(0≤x≤1)solid solution and TiO2 co-exist in composite and form a stable composite system when the(CaxSr1-x)(0≤x≤1)substitutes for Zn of Li2ZnTi3O8 ceramic.As x is increased from 0 to 1,the relative permittivity(εr)increases from 26.65 to 27.12,and the quality factor(Q×f)increases from 63300 to 66600 GHz.With the increased of x,the temperature coefficient of resonant frequency(τf)increases from 0.27 to 8.23 ppm/℃,and then decreases to 3.51 ppm/℃.On the whole,the Li2Zn0.95(SrxCa1-x)0.05Ti3O8(0≤x≤1)ceramics show excellent comprehensive properties of middleεr=25-27,higher Q×f≥60000 GHz andτf≤±8.5 ppm/℃.展开更多
文摘采用溶胶-凝胶法制备Y0.06Sr0.94Ti1-xFexO3-δ(x为原子分数。x=0.2,0.3,0.4,0.5)混合导体材料,用X射线衍射(XRD)分析该材料的物相,采用交流阻抗法和电子阻塞电极法分别测定其总电导率与离子电导率,研究铁含量对Y0.06Sr0.94TiO3混合导体材料的结构及电性能的影响。结果表明该材料属于单一立方相钙钛矿结构;在测试温度范围内,Y0.06Sr0.94Ti1-xFexO3-δ的总电导率和离子电导率都随温度升高而增大;随 Fe 掺杂量增加,总电导率和离子电导率都增大。在800℃下Y0.06Sr0.94Ti1-xFexO3-δ(x=0.2,0.3,0.4,0.5)的总电导率为0.019~0.12 S/cm,离子电导率为0.0106~0.0153 S/cm。根据传导活化能可以看出,x从0.3增加到0.4时材料的传导机制发生改变。
基金Funded by the Open Project Program of Key Laboratory of Inorganic Functional Materials and Devices,Chinese Academy of Sciences(No.KLIFMD201606)the Open Fund of National Innovation Platform(No.2017YJ163)+1 种基金the National Natural Science Foundation of China(Nos.51502220,51521001,and 51672197)the Open Foundation of Hubei Key Laboratory of Theory and Application of Advanced Materials Mechanics(Wuhan University of Technology)(No.TAM201802)。
文摘A temperature stable Li2Zn0.95(SrxCa1-x)0.05Ti3O8(0≤x≤1)ceramics were fabricated using a conventional solid-state route sintered at 1100℃for 4 h.The XRD results indicate that the main phase Li2ZnTi3O8 and secondary phase including SrxCa1-xTiO3(0≤x≤1)solid solution and TiO2 co-exist in composite and form a stable composite system when the(CaxSr1-x)(0≤x≤1)substitutes for Zn of Li2ZnTi3O8 ceramic.As x is increased from 0 to 1,the relative permittivity(εr)increases from 26.65 to 27.12,and the quality factor(Q×f)increases from 63300 to 66600 GHz.With the increased of x,the temperature coefficient of resonant frequency(τf)increases from 0.27 to 8.23 ppm/℃,and then decreases to 3.51 ppm/℃.On the whole,the Li2Zn0.95(SrxCa1-x)0.05Ti3O8(0≤x≤1)ceramics show excellent comprehensive properties of middleεr=25-27,higher Q×f≥60000 GHz andτf≤±8.5 ppm/℃.