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Giant dielectric response in (Sr, Sb) codoped CaCu_3Ti_4O_(12) ceramics: A novel approach

机译:(SR,SB)编排的巨电介质响应Cacu_3Ti_4O_(12)陶瓷:一种新方法

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The CaCu_3Ti_4O_(12) (CCTO) remains as the best material for practical applications due to its high dielectric constant. To improve further the dielectric properties of CCTO to several orders in magnitude, a novel approach is adopted by codoping of Sr, Sb ions. The ceramic samples were fabricated by the conventional solid state route. The structure, morphology and detail dielectric properties were investigated systematically. All the samples crystalizes in a cubic symmetry with Im-3 space group. Sr substituted in Ca site can effectively suppress the grain growth, achieving a fine grained ceramic structure; however the grain size decreased slightly as Sb concentration increased further; whereas the dielectric permittivity of the ceramics increased drastically. The giant dielectric response was considered to be closely related with a reduction in the potential barrier height at grain boundaries (GBs) supported by the reduction in the activation energy for the conduction process.
机译:CACU_3TI_4O_(12)(CCTO)由于其高介电常数,仍然是实际应用的最佳材料。为了进一步改善CCTO的介电性质,其幅度的几个顺序,通过编码Sr,Sb离子来采用新的方法。通过常规固态途径制造陶瓷样品。系统地研究了结构,形态和细节介电性能。所有样品都在与IM-3空间组的立方称对称中结晶。在Ca位点中取代的SR可以有效地抑制晶粒生长,实现细粒颗粒结构;然而,随着Sb浓度的进一步增加,晶粒尺寸略微下降;虽然陶瓷的介电常数急剧增加。认为巨大介电响应与通过降低导电过程的激活能量的晶界(GBS)的潜在屏障高度的降低密切相关。

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