Issue 14, 2015

Zipper-like molecular packing of donor–acceptor conjugated co-oligomers based on perylenediimide

Abstract

The molecular packing of a new class of perylene diimide-based acceptor–donor (A–D) co-oligomers has been investigated by combining electron diffraction and X-ray scattering methods for AD dyads and an ADA triad structure. The AD and ADA compounds form highly ordered lamellar mesophases with well-defined donor and acceptor domains. To determine the structure of the co-oligomers, highly oriented films with different orientations were prepared. Both flat-on and edge-on orientations of the lamellae were obtained by using two different alignment methods. High temperature rubbing leads to edge-on oriented lamellae with the long molecular axis of the co-oligomer oriented almost parallel to the rubbing direction. Instead, on oriented substrates of poly(tetrafluoroethylene) (PTFE), flat-on lying lamellae with the π-stacking direction oriented parallel to the PTFE chains are obtained. The structural data gathered by low dose selected area electron diffraction and high resolution transmission electron microscopy are used to establish a structural model of an AD dyad. Driven by the strong π-stacking of the PDI core, both AD and ADA co-oligomers form two similar self-assembled lamellar structures with an original zipper-like organization of the PDI blocks.

Graphical abstract: Zipper-like molecular packing of donor–acceptor conjugated co-oligomers based on perylenediimide

Supplementary files

Article information

Article type
Paper
Submitted
22 ១ 2015
Accepted
15 ២ 2015
First published
18 ២ 2015
This article is Open Access
Creative Commons BY license

J. Mater. Chem. C, 2015,3, 3342-3349

Zipper-like molecular packing of donor–acceptor conjugated co-oligomers based on perylenediimide

L. Biniek, P. Schwartz, E. Zaborova, B. Heinrich, N. Leclerc, S. Méry and M. Brinkmann, J. Mater. Chem. C, 2015, 3, 3342 DOI: 10.1039/C5TC00221D

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