Influence of Electron Correlation on the Electronic Structure and Magnetism of Transition-Metal Phthalocyanines

There exists an extensive literature on the electronic structure of transition-metal phthalocyanines (TMPcs), either as single molecules or adsorbed on surfaces, where explicit intra-atomic Coulomb interactions of the strongly correlated orbitals are included in the form of a Hubbard U term. The cho...

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Veröffentlicht in:Journal of Chemical Theory and Computation 2016-04, Vol.12 (4), p.1772-1785
Hauptverfasser: Brumboiu, Iulia Emilia, Haldar, Soumyajyoti, Lüder, Johann, Eriksson, Olle, Herper, Heike C, Brena, Barbara, Sanyal, Biplab
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Sprache:eng
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Zusammenfassung:There exists an extensive literature on the electronic structure of transition-metal phthalocyanines (TMPcs), either as single molecules or adsorbed on surfaces, where explicit intra-atomic Coulomb interactions of the strongly correlated orbitals are included in the form of a Hubbard U term. The choice of U is, to a large extent, based solely on previous values reported in the literature for similar systems. Here, we provide a systematic analysis of the influence of electron correlation on the electronic structure and magnetism of several TMPcs (MnPc, FePc, CoPc, NiPc, and CuPc). By comparing calculated results to valence-band photoelectron spectroscopy measurements, and by determining the Hubbard term from linear response, we show that the choice of U is not as straightforward and can be different for each different TMPc. This, in turn, highlights the importance of individually estimating the value of U for each system before performing any further analysis and shows how this value can influence the final results.
ISSN:1549-9618
1549-9626
DOI:10.1021/acs.jctc.6b00091