Synthesis, crystal growth, structure and photophysical properties of decafluoroanthracene and its co-crystals with polycyclic arenes

Abstract

A series of 1:1 co-crystals of decafluoroanthracene with naphthalene, anthracene, tetracene, pyrene, perylene and triphenylene were grown and characterised using single-crystal X-ray diffraction at low and ambient temperature, (polarisation-dependent) fluorescence spectroscopy, and quantum mechanical computations. All of the molecular co-crystal structures are built from infinite stacks of alternating arene and decafluoroanthracene molecules representing the arene-perfluoroarene supramolecular synthon. Intermolecular interactions and packing features are discussed in detail. As a by-product, the heterodimer of tetracene and decafluoroanthracene was obtained after UV-light irradiation of a solution of the monomers, and structurally characterised. The fluorescence properties of the co-crystals of decafluoroanthracene with naphthalene, tetracene, pyrene, perylene and triphenylene are similar to those of one of their components with only a small bathochromic or hypsochromic shift. This shows that the interaction between the components is weak and fits well into the picture of an arene-perfluoroarene interaction. An exception is 1:1 anthracene:decafluoroanthracene, which shows a bathochromic shift of both excitation and especially emission spectra of the co-crystal compared to those of its components, which indicates weak charge transfer coupling already in the ground state followed by an exciplex-like emission.

Supplementary files

Article information

Article type
Research Article
Submitted
28 Sep 2024
Accepted
20 Nov 2024
First published
21 Nov 2024

Org. Chem. Front., 2025, Accepted Manuscript

Synthesis, crystal growth, structure and photophysical properties of decafluoroanthracene and its co-crystals with polycyclic arenes

A. Friedrich, L. Schraut-May, F. Rauch, P. Durand, J. Krebs, P. N. N. Ruth, S. Hammer, R. Bertermann, M. Finze, S. Clark, J. Pflaum, N. Leclerc and T. B. Marder, Org. Chem. Front., 2025, Accepted Manuscript , DOI: 10.1039/D4QO01825G

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