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Structural and electrical properties of cobalt-doped 4H-SrMnO3-delta perovskites obtained by the hydrothermal method

机译:通过水热法获得的钴掺杂的4H-SRMNO3-DELTA钙钛矿的结构和电性能

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摘要

A mild hydrothermal method was adapted to prepare the SrMn1-xCoxO3-delta (0 <= x <= 0.2) compounds. They showed hexagonal-4H perovskite-type structure with space group P6(3)/mmc, and cell parameters a similar to 5.45 and c similar to 9.08 angstrom, as deduced from X-ray and neutron diffraction data. The mean atomic concentrations indicated global stoichiometries close to the nominal ones whereas electron microscopy analyses pointed out to heterogeneity at the nanoscale. The characterization of the electrical response by means of impedance measurements, suggested a semiconductor behavior mainly ascribed to bulk contributions. Relaxation and conduction processes were analyzed. The materials showed mixed electronic-ionic conduction above similar to 400 K, when ionic conduction between intergrains becomes favored. Microstructural homogeneity was revealed as the key factor controlling the electrical response.
机译:适用于温和的水热方法,制备SRMN1-XcoxO3-δ(0 <= X = 0.2)化合物。 它们显示出六边形-4H钙钛矿型结构,具有空间组P6(3)/ MMC,以及类似于5.45和C的电池参数类似于从X射线和中子衍射数据推导的9.08埃相似。 平均原子浓度指示靠近标称值的全球性化学测定物,而电子显微镜分析指出纳米级的异质性。 通过阻抗测量来表征电气响应,建议主要归因于批量贡献的半导体行为。 分析了放松和传导过程。 当嵌入间的离子传导变得有利时,材料显示出上方的混合电子离子传导至400 k。 微观结构均匀性被揭示为控制电响应的关键因素。

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