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Defect structure and defect-induced expansion of undoped oxygen deficient perovskite LaCoO3-delta

机译:未掺杂缺氧钙钛矿LaCoO3-δ的缺陷结构和缺陷诱导的膨胀

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摘要

The results of the isothermal expansion as a function of oxygen partial pressure P-O2 and temperature are first presented for the perovskite-type undoped cobaltite LaCoO3-delta. The modeling of the chemical expansion of this oxygen deficient perovskite on the basis of its defect structure is carried out. The chemical expansion model based on the relative change of the mean ionic radius is evolved. Within the framework of the model electrons and electron holes are assumed to be localized on cobalt sites in LaCoO3-delta. The corresponding equations for the concentration of all ionic species depending on oxygen nonstoichiometry delta enable to derive a model expression, which is used for the computation of the LaCoO3-delta chemical expansion versus oxygen nonstoichiometry. The experimental data on the chemical expansion of LaCoO3-delta, and those calculated on the basis of the model proposed are shown to coincide with each other very good. Such coincidence implies explicitly that the isothermal expansion of LaCoO3-delta observed with oxygen nonstoichiometry growth at given temperature is solely caused by the mean ionic radius increase. The latter occurs due to the partial substitution of "large" Co(n - 1)- cation for smaller Con+ cation as a result of the reduction. On the other hand, aforementioned agreement can be regarded as an additional evidence of the localized nature of the electronic defects in the undoped lanthanum cobaltite.
机译:首先给出了钙钛矿型未掺杂钴LaCoO3-δ等温膨胀随氧分压P-O2和温度变化的结果。对该缺氧钙钛矿的缺陷结构进行化学膨胀建模。建立了基于平均离子半径相对变化的化学膨胀模型。在模型的框架内,假定电子和电子空穴位于LaCoO3-δ的钴位点上。取决于氧气非化学计量学增量的所有离子种类浓度的相应方程式,可以得出模型表达式,该表达式用于计算LaCoO3-δ化学膨胀与氧气非化学计量学的关系。 LaCoO3-δ的化学膨胀实验数据和在所提出的模型的基础上计算得出的数据非常吻合。这种巧合清楚地表明,在给定温度下,随着氧气非化学计量增长而观察到的LaCoO3-δ的等温膨胀完全是由平均离子半径增加引起的。后者的发生是由于还原导致“大” Co(n-1)-阳离子被较小的Con +阳离子部分取代。另一方面,上述协议可被视为未掺杂镧钴矿中电子缺陷局部性质的补充证据。

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