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Enhanced non-Ohmic properties and giant dielectric response of (Sm plus Zn) co-doped CaCu3Ti4O12 ceramics

机译:增强(SM加Zn)共掺杂Cacu3Ti4O12陶瓷的非欧姆特性和巨致电介质响应

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摘要

The non Ohmic and giant dielectric properties of CaCu3Ti4O12 and Ca0.925Sm0.05Cu3-xZnxTi4O12 (x = 0.0-0.10) ceramics prepared by a modified sol-gel method were studied. Influences of (Sm+Zn) co-dopants on the crystalline structure and microstructure of CaCu3Ti4O12 ceramics were investigated. The lattice parameter value was slightly enhanced, while the grain size was greatly reduced by inclusion of (Sm+Zn) co-dopants. Interestingly, the dielectric loss tangent in the frequency range of 10(2)-10(6) Hz was significantly reduced (tan delta approximate to 0.041 at 1 kHz), whereas the dielectric permittivity was still too large (> 10(3)). Furthermore, their nonlinear electrical properties were significantly enhanced. The nonlinear coefficient and breakdown electric field increased with increasing co-dopant concentration. The conduction activation energies of the grain and grain boundaries slightly changed, while the grain boundary resistance was greatly increased corresponding to a reduction in the mean grain size. The variations in giant dielectric and nonlinear electrical properties can be well described by the internal barrier layer capacitor effect.
机译:研究了通过改性溶胶 - 凝胶法制备的CaCu3Ti4O12和CaO 0.925Sm0.05Cu3-XZNXTi4O12(x = 0.0-0.10)陶瓷的非欧姆和巨孔介电性能。 (SM + Zn)共掺杂剂对CaCu3Ti4O12陶瓷晶体结构和微观结构的影响。通过包含(SM + Zn)共掺杂剂,晶格参数值略微增强,而晶粒尺寸大大降低。有趣的是,10(2)-10(6)Hz的频率范围内的介电损失切线显着降低(Tan Delta近似为1kHz的0.041),而介电常数仍然太大(> 10(3)) 。此外,它们的非线性电性能显着增强。随着共掺杂剂浓度的增加,非线性系数和击穿电场增加。晶粒和晶界的导通激活能量略微改变,而晶际电阻大大增加对应于平均晶粒尺寸的降低。巨大电介质和非线性电性能的变化可以通过内部阻挡层电容器效应很好地描述。

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