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Cited 7 time in webofscience Cited 6 time in scopus
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Synergetic Evolution of Diketopyrrolopyrrole-Based Polymeric Semiconductor for High Reproducibility and Performance: Random Copolymerization of Similarly Shaped Building Blocks

Authors
Cho, JangwhanPark, Seong JongLee, Sung MinHa, Jae UnAhn, Eun SooChang, Suk TaiKwon, Soon-KiChung, Dae SungKim, Yun-Hi
Issue Date
Dec-2016
Publisher
John Wiley & Sons Ltd.
Keywords
diketopyrrolopyrrole; high mobility; high solubility; large-scale; random copolymerization
Citation
Macromolecular Rapid Communications, v.37, no.24, pp 2057 - 2063
Pages
7
Indexed
SCI
SCIE
SCOPUS
Journal Title
Macromolecular Rapid Communications
Volume
37
Number
24
Start Page
2057
End Page
2063
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/15090
DOI
10.1002/marc.201600537
ISSN
1022-1336
1521-3927
Abstract
A new random copolymer consisting of similarly shaped donor-acceptor building blocks of diketopyrrolopyrrole-selenophene-vinylene-selenophene (DPP-SVS) and DPP-thiophenevinylene-thiophene (DPP-TVT) is designed and synthesized. The resulting P-DPP-SVS(5)-TVT(5) with an equal molecular ratio of the two building blocks produced significantly enhanced solubility when compared to that of the two homopolymers, PDPP-SVS and PDPP-TVT. More importantly, despite the maximum segmental randomness of the PDPP-SVS(5)-TVT(5) copolymer, its crystalline perfectness and preferential orientation are outstanding, even similar to those of the homopolymers thanks to the similarity of the two building blocks. This unique property produces a high charge carrier mobility of 1.23 cm(2) V-1 s(-1) of PDPP-SVS(5)-TVT(5), as determined from polymer field-effect transistor (PFET) measurements. The high solubility of PDPP-SVS(5)TVT(5) promotes formulation of high-viscosity solutions which could be successfully processed to fabricate large-areal PFETs onto hydrophobically treated 4 in. wafers. A total of 269 individual PFETs are fabricated. These devices exhibit extremely narrow device-to-device deviations without a single failure and demonstrate an average charge carrier mobility of 0.66 cm(2) V-1 s(-1) with a standard deviation of 0.064. This is the first study to report on successfully realizing large-areal reproducibility of high-mobility polymeric semiconductors.
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