English

Revealing the site selective local electronic structure of Co$_{3}$O$_{4}$ using $2p3d$ resonant inelastic X-ray scattering

Materials Science 2020-07-21 v1

Abstract

We investigate mixed-valence oxide Co3_3O4_4 using Co 2p3d2p3d resonant inelastic X-ray scattering (RIXS). By setting resonant edges at Co2+^{2+} and Co3+^{3+} ions, the dddd excitations on the two Co sites are probed selectively, providing detailed information on the local electronic structure of Co3_3O4_4. The 2p3d2p3d RIXS result reveals the 4^4T2_{2} excited state of tetrahedral Co2+^{2+} site at 0.5 eV beyond the discriminative power of optical absorption spectroscopies. Additionally, the 3^3T2g_{2g} excited stated at 1.3 eV is uniquely identified for the octahedral Co3+^{3+} site. Guided by cluster multiplet simulations, the ground-state character of the Co2+^{2+} and Co3+^{3+} site is determined to be high-spin 4^4A2_{2}(Td_d) and low-spin 1^1A1g_{1g}(Oh_h), respectively. This indicates that only the Co2+^{2+} site is magnetically active site at low-temperatures in Co3_3O4_4. The ligand-to-metal charge transfer analysis suggests a formation of a strong covalent bonding between Co and O ions at the Co3+^{3+} site, while Co2+^{2+} is rather ionic.

Keywords

Cite

@article{arxiv.2007.10280,
  title  = {Revealing the site selective local electronic structure of Co$_{3}$O$_{4}$ using $2p3d$ resonant inelastic X-ray scattering},
  author = {Ru-Pan Wang and Meng-Jie Huang and Atsushi Hariki and Jun Okamoto and Hsiao-Yu Huang and Amol Singh and Di-Jing Huang and Peter Nagel and Stefan Schuppler and Ties Haarman and Boyang Liu and Frank M. F. de Groot},
  journal= {arXiv preprint arXiv:2007.10280},
  year   = {2020}
}