Issue 30, 2024

Tailoring the optical properties of rubrene films through epitaxy-induced amorphous-to-crystal transition

Abstract

Crystalline rubrene (RUB) with the orthorhombic structure can be regarded as a workhorse in organic optoelectronics. So far, however, its great potential for device integration has been held back by the struggle to obtain high-quality and photo-oxidation-resistant RUB thin films. Here, we propose an effective strategy to obtain homogeneous, highly crystalline, and oriented RUB thin films, which relies on the spontaneous amorphous-to-crystal transition driven by organic epitaxy occurring at room temperature in vacuum; this crucial process dictates the final morphological, structural, and optoelectronic properties of the film. To probe the kinetics of the transition, we combine ex situ analysis via polarized optical spectroscopy and atomic force microscopy with a photoluminescence investigation carried out in situ, based on monitoring the efficiency of the singlet fission process typical of crystalline RUB. Building on the insights gained, we tune the thin film growth and post-growth parameters to obtain centimeter-scale, highly homogeneous and crystalline RUB thin films, consisting of several μm-sized and coherently oriented domains, featuring oxidation resistance.

Graphical abstract: Tailoring the optical properties of rubrene films through epitaxy-induced amorphous-to-crystal transition

Supplementary files

Article information

Article type
Paper
Submitted
19 Apr 2024
Accepted
19 Jun 2024
First published
20 Jun 2024
This article is Open Access
Creative Commons BY license

J. Mater. Chem. C, 2024,12, 11615-11623

Tailoring the optical properties of rubrene films through epitaxy-induced amorphous-to-crystal transition

S. Trabattoni, L. Raimondo, A. Minotto, A. Monguzzi, F. Meinardi and A. Sassella, J. Mater. Chem. C, 2024, 12, 11615 DOI: 10.1039/D4TC01618A

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