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Polaron hopping mechanism of conducting polymer

Authors
Moiz, S.A.Imran, S.M.Nahhas, A.M.Rehman, F.Ahmed, M.M.Kim, H.-T.Lee, Jung-Ho
Issue Date
2012
Publisher
IEEE
Keywords
adiabatic polaron hopping; isokinetic temperature; Meyer-Neldel rule; Polyaniline
Citation
Proceedings - 2012 International Conference on Emerging Technologies, ICET 2012, pp.219 - 224
Indexed
SCOPUS
Journal Title
Proceedings - 2012 International Conference on Emerging Technologies, ICET 2012
Start Page
219
End Page
224
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/36241
DOI
10.1109/ICET.2012.6375494
Abstract
To investigate the polaron hopping mechanism, thin films of polyaniline with solvent and without solvents were deposited over the surface of Al thin film and electrical properties were evaluated as a function of temperature ranging from - 60°C to 60°C. It was observed that all devices followed Arrhenius response of conductivity within given temperature range. The pre-exponential factor of conductivity and activation-energy for each device were found interrelated with isokinetic temperature (Meyer-Neldel Temperature) according to the Meyer-Neldel rule (MNR). It was examined that the solvent provides higher value of isokinetic temperature and lower value of activation energy, which may be due to the enhancement of solvent-induced crystallization, improvement of electronic energy transfer rate between molecular chains and softening of molecular vibration in polymer chains. The results demonstrate that IPA offers superior solvent response as compared to acetone for PANIEB matrix. The understandings obtained from this study will improve our knowledge for both the origin of MNR and the thermal-activated charge transport mechanism for conducting polymer in the presence of solvent. © 2012 IEEE.
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ERICA 공학대학 (DEPARTMENT OF MATERIALS SCIENCE AND CHEMICAL ENGINEERING)
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