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首页> 外文期刊>CERAMICS INTERNATIONAL >The transition from non-ohmic to ohmic characteristics in La2O3 doped ZnO-MgO-TiO2 linear resistance ceramics
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The transition from non-ohmic to ohmic characteristics in La2O3 doped ZnO-MgO-TiO2 linear resistance ceramics

机译:La2O3掺杂ZnO-MgO-TiO2线性电阻陶瓷从非欧姆特性到欧姆特性的转变

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摘要

La2O3 doped ZnO-MgO-TiO2 based linear resistance ceramics were prepared by the solid phase sintering method. The doping content of La2O3 is from 0.0 wt to 2.5 wt. The solubility of La2O3 in ZnO is less than 0.06 mol (0.5 wt), La0.66TiO2.993 phases will be formed at grain boundary and change the distribution of spinel phase when La2O3 is excessive. For I-V test, undoped sample exhibits typical non-ohmic characteristics, but La doped samples show excellent ohmic behaviors under low DC and high pulse current (PC). The complex impedance spectrum and the frequency dependent conductivity furtherly demonstrate that La-doped samples possess linear characteristics because there is no grain boundary effect which can affect the electron transmission at grain boundaries. Besides, the decrease of the grain boundary barrier from 0.2135eV for undoped sample to 0.0031eV for 0.5 wt La doped samples can account for the elimination or reduction of grain boundary effect. In this work, the transition from non-ohmic to ohmic properties by doping La2O3 in ZnO-MgO-TiO2 multiphase ceramics is realized.
机译:采用固相烧结法制备了La2O3掺杂ZnO-MgO-TiO2基线性电阻陶瓷。La2O3的掺杂含量为0.0 wt%至2.5 wt%。La2O3在ZnO中的溶解度小于0.06 mol%(0.5 wt%),当La2O3过量时,在晶界处会形成La0.66TiO2.993相,并改变尖晶石相的分布。对于I-V测试,未掺杂的样品表现出典型的非欧姆特性,但La掺杂样品在低直流和高脉冲电流(PC)下表现出优异的欧姆行为。复阻抗谱和随频率变化的电导率进一步证明了La掺杂样品具有线性特性,因为不存在影响晶界处电子传输的晶界效应。此外,未掺杂样品的晶界势垒从0.2135eV降低到0.5 wt% La掺杂样品的0.0031eV,可以消除或减少晶界效应。本工作通过在ZnO-MgO-TiO2多相陶瓷中掺杂La2O3实现了从非欧姆性质到欧姆性质的转变。

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