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Fine Molecular Tuning of Diketopyrrolopyrrole-Based Polymer Semiconductors for Efficient Charge Transport: Effects of Intramolecular Conjugation Structure

Authors
Yu, Seong HoonPark, Kwang HunKim, Yun-HiChung, Dae SungKwon, Soon-Ki
Issue Date
Jun-2017
Publisher
American Chemical Society
Citation
Macromolecules, v.50, no.11, pp 4227 - 4234
Pages
8
Indexed
SCI
SCIE
SCOPUS
Journal Title
Macromolecules
Volume
50
Number
11
Start Page
4227
End Page
4234
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/13666
DOI
10.1021/acs.macromol.7b00624
ISSN
0024-9297
1520-5835
Abstract
To improve the charge carrier mobility of diketopyrrolopyrrole block is controlled using vinylene moieties, and its effects on crystalline donor acceptor copolymer semiconductors, the length of the donor building structure and charge transport are systematically studied. We synthesize P29DPP-TBT with two vinylene linkages between thiophene units and compare it with P29-DPP-TVT with single vinylene linkage. Density functional theory calculations predict enhanced backbone planarity of P29-DPP-TBT compared to P29-DPP-TVT, which can be related to the increased conjugation length of P29-DPP-TBT as proved by the increased free exciton bandwidth extracted from UV vis absorption spectra and the wavenumber shift of the C-C peaks to higher values in Raman spectra. From two-dimensional grazing incident X-ray diffraction studies, it is turned out that the paracrystalline disorder is lower in P29-DPP-TBT than in P29-DPP-TVT. Near-edge X-ray absorption fine structure spectroscopy reveal that more edge-on structure of polymer backbone is formed in the case of P29-DPP-TBT. By measuring the temperature dependence of the charge carrier mobilities, it is turned out that the activation energy for charge hopping is lower for P29-DPP-TBT than for P29-DPP-TVT. Collectively, these results imply that the substitution of extended z-conjugated donor moiety of polymeric semiconductors can yield a more planar backbone structure and thus enhanced intermolecular interaction which enables more perfect crystalline structure as well as enhanced charge transport behavior.
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자연과학대학 (화학과)
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