Influence of graphene on the electronic and magnetic properties of an iron(III) porphyrin chloride complex.

Phys Chem Chem Phys

Institut für Theoretische Physik, Goethe-Universität Frankfurt, Max-von-Laue-Str. 1, 60438 Frankfurt am Main, Germany.

Published: October 2024

AI Article Synopsis

  • Iron-based single atom catalysts are seen as a cost-effective alternative to precious metals, but their electronic structures during catalysis are complex and difficult to model accurately.
  • This research focuses on an iron porphyrin chloride complex on a graphene sheet, using density functional theory to analyze how the graphene layer alters the electronic structure.
  • Findings reveal that weaker van der Waals forces govern the interaction between the iron complex and graphene, leading to minimal charge transfer; furthermore, various factors like ligand field, p-d hybridization, and correlation effects are crucial in determining the iron ion's spin state.

Article Abstract

Although iron-based single atom catalysts are regarded as a promising alternative to precious metal catalysts, their precise electronic structures during catalysis still pose challenges for computational descriptions. A particularly urgent issue to be addressed is the influence of the environment on the electronic structure, and how to describe this accurately using computational methods. Here, we study an iron porphyrin chloride complex adsorbed on a graphene sheet using density functional theory calculations to probe how much the electronic structure is influenced by the presence of a graphene layer. Our results indicate that weak interactions due to van der Waals forces dominate between the porphyrin complex and graphene, and only a small amount of charge is transferred between the two entities. Furthermore, the interplay of the ligand field environment, strong p-d hybridization, and correlation effects within the complex are strongly involved in determining the spin state of the iron ion. By bridging molecular chemistry and solid state physics, this study provides first steps towards a joint analysis of the properties of iron-based catalysts from first principles.

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Source
http://dx.doi.org/10.1039/d4cp01551gDOI Listing

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