Issue 33, 2021

Precursor polymorph determines the organic semiconductor structure formed upon annealing

Abstract

Films of the chemical precursor tBoc-quinacridone obtained by the spin-coating and bar-assisted meniscus shearing methods were subjected to thermal deprotection to recover the organic semiconductor quinacridone in its crystalline form. We found that the final crystal structure of the semiconductor on the Si/SiO2 substrate is in fact determined by the chemical precursor starting structure, which is in turn induced by the deposition method. Indeed, the samples prepared by spin coating display the precursor structure known from the literature, which transforms into the β-quinacridone phase. The shearing technique instead yields highly homogeneous films composed of a novel tBoc-quinacridone polymorph, which acts as a trigger for the subsequent formation of a pure, well oriented α-quinacridone phase. Although this crystalline form is the least stable of the many quinacridone polymorphs, here it turns out to be selectively induced and stabilized. Finally, the organic field effect transistor charge mobility of the α-quinacridone films was measured.

Graphical abstract: Precursor polymorph determines the organic semiconductor structure formed upon annealing

Supplementary files

Article information

Article type
Paper
Submitted
22 Mar 2021
Accepted
18 Jun 2021
First published
18 Jun 2021

J. Mater. Chem. C, 2021,9, 10865-10874

Precursor polymorph determines the organic semiconductor structure formed upon annealing

L. Pandolfi, A. Giunchi, A. Rivalta, S. D'Agostino, R. G. Della Valle, M. Mas-Torrent, M. Lanzi, E. Venuti and T. Salzillo, J. Mater. Chem. C, 2021, 9, 10865 DOI: 10.1039/D1TC01313K

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