首页> 外文期刊>RSC Advances >Time–temperature superposition in the grain and grain boundary response regime of A2HoRuO6 (A = Ba, Sr, Ca) double perovskite ceramics: a conductivity spectroscopic analysis
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Time–temperature superposition in the grain and grain boundary response regime of A2HoRuO6 (A = Ba, Sr, Ca) double perovskite ceramics: a conductivity spectroscopic analysis

机译:A 2 HoRuO 6 (A = Ba,Sr,Ca)双钙钛矿陶瓷的时温叠加和晶界响应态:电导光谱分析

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The pursuit for a universal scaling factor to satisfy the time–temperature superposition principle for grain and grain boundary responses has been explored in the ac conductivity domain for polycrystalline double perovskite oxides A2HoRuO6 (AHR; A = Ba, Sr, Ca). The samples show different structural phases, from cubic to monoclinic, with decreasing ionic radii. The degree of distortion in the materials is correlated to the strength of the bonding through the bond valence sum (BVS) formalism. The conductivity spectra for all of the samples obey the power law variation. The contribution of different microstructural domains to the conduction process is established. Thermal variation of the dc resistivity points towards a gradual crossover from nearest neighbour to variable range hopping. The activation energies obtained from the dc conductivity, hopping frequency and relaxation frequency show close correlation between the conduction and relaxation mechanisms. The scaled conductivity curves for AHR display the presence of two different conduction processes with dissimilar activation energies in the grain boundary and the grain response regimes. It is thus concluded that a single scaling parameter is insufficient to satisfy the time temperature superposition principle universally when two different thermally activated regions are present simultaneously in the materials.
机译:在多晶双钙钛矿氧化物A 2 的交流电导率域中,探索了一种满足晶粒和晶界响应时间-温度叠加原理的通用比例因子的追求。 HoRuO 6 (AHR; A = Ba,Sr,Ca)。样品显示出从立方到单斜晶的不同结构相,且离子半径减小。材料的变形程度通过键合价和(BVS)形式主义与键合强度相关。所有样品的电导率谱均服从幂律变化。建立了不同的微结构域对传导过程的贡献。直流电阻率的热变化指向从最近邻点到可变范围跳变的逐渐过渡。从直流电导率,跳跃频率和弛豫频率获得的活化能显示出传导机制和弛豫机制之间的密切相关性。 AHR的比例电导率曲线显示了两种不同的传导过程的存在,这些过程在晶界和晶粒响应机制中具有不同的活化能。因此得出的结论是,当材料中同时存在两个不同的热激活区域时,单个缩放参数不足以普遍满足时间温度叠加原理。

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