Electrochemical Synthesis of Poly(3-Bromo and Its Device Application
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Date
2007
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
Elsevier Science Sa
Open Access Color
Green Open Access
No
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Publicly Funded
No
Abstract
A functionalized thiophene containing both an electron withdrawing and an electron donating group, 3-bromo-4-methoxythiophene (BrMeOTh) was succesfully polymerized in acetonitrile containing 0.1 M tetrabutylammonium tetrafluoroborate (TBABF4) electrolyte via electrochemical oxidation of the corresponding monomer. BrMeOTh exhibits a lower oxidation potential (1.68 V vs Ag/AgCl) than thiophene (2.05 V vs Ag/AgCl). Spectroelectrochemical properties of poly(3-bromo-4-methoxythiophene) (PBrMeOTh) was investigated in situ recording the electronic absorption spectra of the polymer film coated on indium-tin oxide (ITO) at various potentials. The maximum transmittance difference between the oxidized and reduced states was measured as 39.2% and the time required to attain 90% of the total transmittance difference was found to be 1.2 s. Both cyclic voltammetric and spectroelectrochemical studies showed that the polymer exhibit a lower oxidation potential, a relatively narrow band gap, a stable conducting state and a higher degree of electrochemical reversibility. It is also found that, as synthesized PBrMeOTh films possess a linear structure along the polymer backbone. Moreover, dual type electrochromic device of PBrMeOTh with poly(3,4-diethylenedioxythiohene) (PEDOT) was constructed and its spectroelectrochemical, electrochromic switching and open circuit stability were investigated. Dual electrochromic device showed a good optical contrast and distinctive color changes with the ability of good switching times (1.1 s) under atmospheric pressure. (c) 2006 Elsevier B.V. All rights reserved.
Description
Onal, ahmet muhtar/0000-0003-0644-7180
ORCID
Keywords
electrochemical synthesis, spectroelectrochemistry, electrochromic device, poly(3-bromo-4-methoxythiophene)
Turkish CoHE Thesis Center URL
Fields of Science
02 engineering and technology, 0210 nano-technology, 01 natural sciences, 0104 chemical sciences
Citation
WoS Q
Q1
Scopus Q
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OpenCitations Citation Count
23
Source
Journal of Electroanalytical Chemistry
Volume
601
Issue
1-2
Start Page
68
End Page
76
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Citations
CrossRef : 23
Scopus : 26
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Mendeley Readers : 23
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OpenAlex FWCI
1.92748482
Sustainable Development Goals
9
INDUSTRY, INNOVATION AND INFRASTRUCTURE


