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Influence of CaO doping on phase, microstructure, electrical and dielectric properties of ZnO varistors

机译:CaO掺杂对ZnO变阻器相,微观结构,电和介电性能的影响

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In present study, impact of CaO doping on microstructure and phase electrical properties of a ZnO varistor is being reported. The doped ZnO nanopowders were prepared by solution combustion followed by conventional sintering. The ZnO particle size of powders decreased from 22 to 17 nm with CaO doping was noted. Decrease in grain size of the sintered samples from 4.54 to 1.19 mu m with CaO doping was observed. This is attributed to Ca4Bi6O13 and Ca0.89Bi3.11O5.58 secondary phase formations apart from pyrochlore and spinet phases. A breakdown field as high as 21 kVcm(-1) in X = 1.00 sample was obtained. The Coefficient of nonlinearity (alpha) decreased from 95 to 42 is due to decrease in carrier concentrations. Increase in resistivity with CaO doping and decrease in resistivity beyond X = 2.5 were noted. The electric modulus plots yielded two relaxations at a temperature in the range 100-300 degrees C and frequency in the range 0.1 Hz-1MHz. Activation energy (E-a) decreased from 0.65 to 0.50 eV for a region I and from 0.89 to 0.75 eV for region II with CaO doping was observed. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本研究中,报道了CaO掺杂对ZnO变阻器的微观结构和相电性能的影响。通过溶液燃烧制备掺杂的ZnO纳米粉末,然后进行常规烧结。粉末的ZnO粒度从22-17nm降低,注意到CaO掺杂。观察到烧结样品的晶粒尺寸降低,从4.54〜1.19μm含有CaO掺杂。这归因于CA4BI6O13和CA0.89BI3.11O5.58除了纤维晶和纺丝阶段的二次相形成。获得了x = 1.00样品中高达21 kVcm(-1)的击穿场。从95至42减少的非线性(α)的系数是由于载体浓度的降低。注意到与CAO掺杂的电阻率增加,并且在x = 2.5之外的电阻率降低。电模量图在100-300℃的温度下产生两个弛豫,频率为0.1Hz-1MHz。激活能量(E-A)从0.65至0.50eV降低,对于区域I,对于区域II,观察到CaO掺杂的0.89至0.75eV。 (c)2019 Elsevier B.v.保留所有权利。

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