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  4. Macroscopic quantum electrodynamics and density functional theory approaches to dispersion interactions between fullerenes
 
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2020
Journal Article
Title

Macroscopic quantum electrodynamics and density functional theory approaches to dispersion interactions between fullerenes

Abstract
The processing and material properties of commercial organic semiconductors, for e.g. fullerenes is largely controlled by their precise arrangements, specially intermolecular symmetries, distances and orientations, more specifically, molecular polarisabilities. These supramolecular parameters heavily influence their electronic structure, thereby determining molecular photophysics and therefore dictating their usability as n-type semiconductors. In this article we evaluate van der Waals potentials of a fullerene dimer model system using two approaches: (a) Density Functional Theory and, (b) Macroscopic Quantum Electrodynamics, which is particularly suited for describing long-range van der Waals interactions. Essentially, we determine and explain the model symmetry, distance and rotational dependencies on binding energies and spectral changes. The resultant spectral tuning is compared using both methods showing correspondence within the constraints placed by the different model assumptions. We envision that the application of macroscopic methods and structure/property relationships laid forward in this article will find use in fundamental supramolecular electronics.
Author(s)
Das, S.
Friedrich Schiller University Jena
Fiedler, J.
University of Freiburg; University of Oslo
Stauffert, O.
Albert-Ludwigs University of Freiburg
Walter, M.
Fraunhofer-Institut für Werkstoffmechanik IWM  
Buhmann, S.Y.
Albert-Ludwigs University of Freiburg
Presselt, M.
Friedrich Schiller University Jena; Sciclus GmbH & Co. KG,
Journal
Physical chemistry, chemical physics : PCCP  
Funder
Bundesministerium für Bildung und Forschung BMBF (Deutschland)  
Deutsche Forschungsgemeinschaft DFG  
Deutsche Forschungsgemeinschaft DFG  
Open Access
DOI
10.1039/d0cp02863k
Link
Link
Language
English
Fraunhofer-Institut für Werkstoffmechanik IWM  
Keyword(s)
  • binding energy

  • dimers

  • electrodynamic

  • electronic structure

  • fullerenes

  • organic semiconductor materials

  • Photophysics

  • supramolecular chemistry

  • Van der Waals forces

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