ELECTRONIC-STRUCTURE OF SRFE4+O3 AND RELATED FE PEROVSKITE OXIDES

被引:374
作者
BOCQUET, AE
FUJIMORI, A
MIZOKAWA, T
SAITOH, T
NAMATAME, H
SUGA, S
KIMIZUKA, N
TAKEDA, Y
TAKANO, M
机构
[1] UNIV TOKYO,DEPT PHYS,BUNKYO KU,TOKYO 113,JAPAN
[2] UNIV TOKYO,DEPT APPL PHYS,BUNKYO KU,TOKYO 113,JAPAN
[3] OSAKA UNIV,FAC ENGN SCI,DEPT MAT PHYS,TOYONAKA,OSAKA 560,JAPAN
[4] NATL INST RES INORGAN MAT,TSUKUBA,IBARAKI 305,JAPAN
[5] MIE UNIV,FAC ENGN,DEPT CHEM,TSU,MIE 514,JAPAN
[6] KYOTO UNIV,INST CHEM RES,UJI,KYOTO 611,JAPAN
来源
PHYSICAL REVIEW B | 1992年 / 45卷 / 04期
关键词
D O I
10.1103/PhysRevB.45.1561
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The electronic structure of SrFeO3 has been investigated by x-ray photoemission and ultraviolet photoemission spectroscopy. We find that the ground state consists of heavily mixed d4 and d5L states, reflecting the large covalency. The Fe 3s core-level splitting, together with a subsequent cluster-model configuration-interaction calculation, shows that a high-spin t2g(eg)3 ground state is stabilized. The Fe 2p core levels have been interpreted using a p-d charge-transfer cluster-model calculation. The charge-transfer energy DELTA(eff) defined with respect to the lowest multiplet levels of the d4 and d5L configurations, is negative, which means that a large amount of charge is transferred via Fe-O bonds from the O 2p bands to the metal d orbitals and that the ground state is dominated by the d5L configuration. This reduces the charge on the ionic sites, leading to only a small chemical shift between the Fe3+ and Fe4+ compounds. The band-gap energy E(gap+) calculated using the cluster model for the high-spin d4 configuration, is small due to the small charge-transfer energy and the large exchange stabilization of the adjacent d5 configuration. This small value for E(gap) leads to the presence of itinerant d electrons in the periodic lattice, causing metallic conductivity in SrFeO3 and charge disproportionation in CaFeO3.
引用
收藏
页码:1561 / 1570
页数:10
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