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Controlling aggregate formation in conjugated polymers by spin‐coating below the critical temperature of the disorder–order transition.

Authors :
Reichenberger, Markus
Kroh, Daniel
Matrone, Giovanni M. M.
Schötz, Konstantin
Pröller, Stephan
Filonik, Oliver
Thordardottir, Margret E.
Herzig, Eva M.
Bässler, Heinz
Stingelin, Natalie
Köhler, Anna
Source :
Journal of Polymer Science. Part B, Polymer Physics; Mar2018, Vol. 56 Issue 6, p532-542, 12p
Publication Year :
2018

Abstract

ABSTRACT: Aggregates – that is short‐ranged ordered moieties in the solid‐state of π‐conjugated polymers – play an important role in the photophysics and performance of various optoelectronic devices. We have previously shown that many polymers change from a disordered to a more ordered conformation when cooling a solution below a characteristic critical temperature T c. Using <italic>in situ</italic> time‐resolved absorption spectroscopy on the prototypical semiconducting polymers P3HT, PFO, PCPDTBT, and PCE11 (PffBT4T‐2OD), we show that spin‐coating at a temperature below T c can enhance the formation of aggregates with strong intra‐chain coupling. An analysis of their time‐resolved spectra indicates that the formation of nuclei in the initial stages of film formation for substrates held below T c seems responsible for this. We observe that the growth rate of the aggregates is thermally activated with an energy of 310 meV, which is much more than that of the solvent viscosity (100 meV). From this we conclude that the rate controlling step is the planarization of a chain that is associated with its attachment to a nucleation center. The success of our approach for the rather dynamic deposition method of spin‐coating holds promise for other solution‐based deposition methods. © 2017 Wiley Periodicals, Inc. J. Polym. Sci., Part B: Polym. Phys. <bold>2018</bold>, <italic>56</italic>, 532–542 [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
08876266
Volume :
56
Issue :
6
Database :
Complementary Index
Journal :
Journal of Polymer Science. Part B, Polymer Physics
Publication Type :
Academic Journal
Accession number :
127818413
Full Text :
https://doi.org/10.1002/polb.24562