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Electronic state of 57Fe used as M?ssbauer probe in the perovskites LaMO3 (M=Ni and Cu)

机译:钙钛矿LaMO3(M = Ni和Cu)中用作M?ssbauer探针的57Fe的电子态

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For the first time a comparative study of rhombohedral LaNiO3 and LaCuO3 oxides, using 57Fe M?ssbauer probe spectroscopy (1% atomic rate), has been carried out. In spite of the fact that both oxides are characterized by similar crystal structure and metallic properties, the behavior of 57Fe probe atoms in such lattices appears essentially different. In the case of LaNi0.99Fe0.01O3, the observed isomer shift (δ) value corresponds to Fe3+ (3d5) cations in high-spin state located in an oxygen octahedral surrounding. In contrast, for the LaCu0.99Fe0.01O3, the obtained δ value is comparable to that characterizing the formally tetravalent high-spin Fe4+(3d4) cations in octahedral coordination within Fe(IV) perovskite-like ferrates. To explain such a difference, an approach based on the qualitative energy diagrams analysis and the calculations within the cluster configuration interaction method have been developed. It was shown that in the case of LaNi0.99Fe0.01O3, electronic state of nickel is dominated by the d7 configuration corresponding to the formal ionic “Ni3+–O2?” state. On the other hand, in the case of LaCu0.99Fe0.01O3 a large amount of charge is transferred via Cu–O bonds from the O:2p bands to the Cu:3d orbitals and the ground state is dominated by the d9L configuration (“Cu2+?O” state). The dominant d9L ground state for the (CuO6) sublattice induces in the environment of the 57Fe probe cations a charge transfer Fe3++O?(L)→Fe4++O2?, which transforms “Fe3+” into “Fe4+” state. The analysis of the isomer shift value for the formally “Fe4+” ions in perovskite-like oxides clearly proved a drastic influence of the 4s iron orbitals population on the Fe?O bonds character.
机译:首次使用57Fe Msssbauer探针光谱法(原子率为1%)对菱形LaNiO3和LaCuO3氧化物进行了比较研究。尽管两种氧化物都具有相似的晶体结构和金属特性,但57Fe探针原子在此类晶格中的行为却表现出本质上的差异。在LaNi0.99Fe0.01O3的情况下,观察到的异构体位移(δ)值对应于位于氧八面体周围的高自旋状态的Fe3 +(3d5)阳离子。相比之下,对于LaCu0.99Fe0.01O3,获得的δ值与表征钙钛矿状铁(IV)高铁酸盐中八面体配位形式的正态四价高旋转Fe4 +(3d4)阳离子的特征相当。为了解释这种差异,已经开发了一种基于定性能量图分析和群集配置交互方法内计算的方法。结果表明,在LaNi0.99Fe0.01O3的情况下,镍的电子态由对应于形式离子“ Ni3 + –O2?”的d7构型所控制。州。另一方面,在LaCu0.99Fe0.01O3的情况下,大量电荷通过Cu-O键从O:2p谱带转移到Cu:3d轨道,并且基态由d9L构型控制(“ Cu 2 +→O”状态。 (CuO6)亚晶格的主要d9L基态在57Fe探针阳离子的环境中引起电荷转移Fe3 ++ O?(L)→Fe4 ++ O2 ?,从而将“ Fe3 +”转变为“ Fe4 +”状态。钙钛矿状氧化物中形式“ Fe4 +”离子的异构体位移值的分析清楚地证明了4s铁轨道人口对Fe?O键特性的剧烈影响。

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