Mixed-valence behavior and strong correlation effects of metal phthalocyanines adsorbed on metals
Publication date
2011-06-09
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Abstract
We investigate the hierarchy of local correlation and hybridization effects in metal-organic molecules adsorbed on metals. Using x-raymagnetic circular dichroism and ligand field multiplet calculations, we demonstrate that the 3d electronic ground state of monolayer metal-phthalocyanine (CoPc, FePc) on Au(111) is given by the coherent superposition of two charge states, d(n)E + d(n+1), where E represents a substrate electron antiferromagnetically coupled to the central metal ion and d(n) the many-body ionic orbital configuration of the unperturbed molecule. These results differ from previous models of hybrid metal-organic systems and provide a consistent description of their magnetic moments and Kondo physics in terms of spin and orbital multiplicity.
Keywords
ELECTRONIC-STRUCTURE, GROUND-STATE, SPIN, CU, MOLECULES, NI, CO
Citation
Stepanow, S, Miedema, P S, Mugarza, A, Ceballos, G, Moras, P, Cezar, J C, Carbone, C, de Groot, F M F & Gambardella, P 2011, 'Mixed-valence behavior and strong correlation effects of metal phthalocyanines adsorbed on metals', Physical Review B - Condensed Matter and Materials Physics, vol. 83, no. 22, 220401, pp. 220401/1-220401/4. https://doi.org/10.1103/PhysRevB.83.220401