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Oxygen vacancy formation and defect structure of Cu-doped lanthanum chromite LaCr0.79Cu0.05Al0.16O3-delta

机译:铜掺杂亚铬酸镧LaCr0.79Cu0.05Al0.16O3-δ的氧空位形成和缺陷结构

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摘要

The results of oxygen nonstoichiometry are presented for the chromite LaCr0.79Cu0.05Al0.16O3-delta with hexagonal perovskite structure at 1000 degreesC. The modeling of the defect structure of this oxygen deficient chromite is carried out by considering also the acceptor dopant Cu on B-site. The equilibrium constants, necessary to calculate all a priori unknown equilibrium defect concentrations, are determined by fitting the derived model equation to the measured oxygen nonstoichiometry. The three oxidation states 3+, 2+, and 1+ for copper are considered simultaneously in Cu-doped lanthanum chromite in addition to 3+ and 4+ states for chromium in the host lattice. The results of the fitting revealed that there is no significant change of the Cr3+ oxidation state over the complete oxygen partial pressure range investigated (-20less than or equal tolog(p(O2)/atm)less than or equal to0). In contrast to this, copper changes its oxidation state continuously from 3+ via 2+ to 1+ if the oxygen partial pressure decreases thereby giving rise to oxygen vacancy formation. (C) 2004 Elsevier B.V. All rights reserved.
机译:给出了在1000℃具有六方钙钛矿结构的亚铬酸盐LaCr0.79Cu0.05Al0.16O3-δ的氧非化学计量结果。还通过考虑B位上的受体掺杂剂Cu来进行该缺氧亚铬酸盐的缺陷结构的建模。计算所有先验未知平衡缺陷浓度所必需的平衡常数是通过将导出的模型方程式拟合到测得的氧非化学计量法而确定的。除了主晶格中铬的3+和4+状态外,在掺Cu亚铬酸镧中同时考虑了铜的三个氧化态3 +,2 +和1+。拟合结果表明,在研究的整个氧气分压范围内(-20小于或等于loglog(p(O2)/ atm)小于或等于0),Cr3 +氧化态没有显着变化。与此相反,如果氧分压降低,则铜的氧化态连续地从3+经由2+变为1+,从而导致氧空位的形成。 (C)2004 Elsevier B.V.保留所有权利。

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