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Inhomogeneous charge transfer within monolayer zinc phthalocyanine absorbed on TiO 2(110)

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posted on 2024-07-09, 23:30 authored by Shun Yu, Sareh Ahmadi, Chenghua SunChenghua Sun, Pooya Tabib Zadeh Adibi, Winnie Chow, Annette Pietzsch, Mats Göthelid
The d-orbital contribution from the transition metal centers of phthalocyanine brings difficulties to understand the role of the organic ligands and their molecular frontier orbitals when it adsorbs on oxide surfaces. Here we use zinc phthalocyanine (ZnPc)/TiO2(110) as a model system where the zinc d-orbitals are located deep below the organic orbitals leaving room for a detailed study of the interaction between the organic ligand and the substrate. A charge depletion from the highest occupied molecular orbital is observed, and a consequent shift of N1s and C1s to higher binding energy in photoelectron spectroscopy (PES). A detailed comparison of peak shifts in PES and near-edge X-ray absorption fine structure spectroscopy illustrates a slightly uneven charge distribution within the molecular plane and an inhomogeneous charge transfer screening between the center and periphery of the organic ligand: faster in the periphery and slower at the center, which is different from other metal phthalocyanine, e.g., FePc/TiO2. Our results indicate that the metal center can substantially influence the electronic properties of the organic ligand at the interface by introducing an additional charge transfer channel to the inner molecular part.

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ISSN

0021-9606

Journal title

Journal of Chemical Physics

Volume

136

Issue

15

Article number

article no. 154703

Pagination

1 p

Publisher

AIP Publishing

Copyright statement

Copyright © 2012 American Institute of Physics. The published version of the article is reproduced here with permission of the publisher. It may be downloaded for personal use only. Any other use requires prior permission of the author and the American Institute of Physics. The following article appeared inThe Journal of Chemical Physics and may be found at https://doi.org/10.1063/1.3699072.

Language

eng

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