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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Detailed Phase Analysis and Crystal Structure Investigation of a Bi_(1-x)Ca_xFeO_(3-x/2) Perovskite-Related Solid Solution Phase and Selected Property Measurements Thereof
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Detailed Phase Analysis and Crystal Structure Investigation of a Bi_(1-x)Ca_xFeO_(3-x/2) Perovskite-Related Solid Solution Phase and Selected Property Measurements Thereof

机译:Bi_(1-x)Ca_xFeO_(3-x / 2)钙钛矿相关固溶体相的详细相分析和晶体结构研究以及其部分性能测量

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摘要

A well-ordered, perovskite-related, Bi_(1-x)Ca_xFe~(III)O_(3-x/2) solid solution phase is synthesized via a rapid liquid phase sintering technique and shown to exist over the composition range ~0.20 < x < ~0.49. Two phase regions are shown to separate this phase from compositionally narrow end-member Bi_(1_x)Ca_xFe~(III)O_(3-x/2) solid solutions based on rhombohedral BiFe63 and brownmillerite, Ca2Fe2O5, respectively. The wide range, non-stoichiometric phase is characterized by a well ordered, (in general) incommensurately modulated structure that varies systematically with composition. Mossbauer spectroscopy is used to verify the oxidation state of iron as (III), as well as showing the existence of three separate iron environments across the solid solution field. HRTEM imaging is used to develop a structural model for the phase at one particular composition. The magnetic, dielectric, and impedance properties of this solid solution phase are reported. Magnetic measurements show antiferromagnetic behavior. There is no change in either susceptibility or antiferromagnetic behavior with composition. Attempts at obtaining saturated ferroelectric loops failed due to high intrinsic conductivity. The phase is found to exhibit a low frequency impedance relaxation that.is likely due to correlated oxygen vacancy hopping.
机译:通过快速液相烧结技术合成了与钙钛矿有关的有序的Bi_(1-x)Ca_xFe〜(III)O_(3-x / 2)固溶体相,并显示存在于〜0.20的范围内

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