Conductivity, dielectric studies and structural properties of P(VA-co-PE) and its application in dye sensitized solar cell

Poly(vinyl alcohol-co-ethylene), P(VA-co-PE) gel polymer electrolytes (GPEs) with sodium iodide (NaI) as a dopant salt was synthesized and investigated. Electrolytes containing different concentrations of NaI salt were studied using AC impedance spectroscopy, FTIR spectroscopy, and XRD spectroscopy....

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Main Authors: Tan, Chou Yong, Farhana, N.K., Saidi, Norshahirah M., Ramesh, Subramaniam, Ramesh, Kasi
Format: Article
Published: Elsevier 2018
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Online Access:http://eprints.um.edu.my/20546/
https://doi.org/10.1016/j.orgel.2018.02.007
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spelling my.um.eprints.205462019-03-04T01:49:19Z http://eprints.um.edu.my/20546/ Conductivity, dielectric studies and structural properties of P(VA-co-PE) and its application in dye sensitized solar cell Tan, Chou Yong Farhana, N.K. Saidi, Norshahirah M. Ramesh, Subramaniam Ramesh, Kasi Q Science (General) QC Physics Poly(vinyl alcohol-co-ethylene), P(VA-co-PE) gel polymer electrolytes (GPEs) with sodium iodide (NaI) as a dopant salt was synthesized and investigated. Electrolytes containing different concentrations of NaI salt were studied using AC impedance spectroscopy, FTIR spectroscopy, and XRD spectroscopy. The results from dielectric studies reveal both the real part and imaginary part of complex permittivity decrease with increasing frequency. An opposite trend was observed when the temperatures of the samples were increased. Besides, the dispersion relation from the modulus studies confirmed that ionic conductivity is dominant in the GPE samples. Results from temperature studies reveal that all GPE samples conform the Arrhenius equation in the temperature range of 303 K to 373 K. The sample with 40% of NaI exhibits the highest ionic conductivity of 2.266 mS cm−1 with the activation energy of 0.16808 eV. Furthermore, FTIR studies proved the complexation between P(VA-co-PE) and NaI. The crystallinity of the samples was shown to be increasing with the increasing concentration of NaI salt via XRD results. Finally, DSSCs were assembled using the polymer electrolyte and used for photovoltaic studies. The best performance of DSSC was obtained with the energy conversion efficiency of 3.32% using the GPE sample with 40% NaI. Elsevier 2018 Article PeerReviewed Tan, Chou Yong and Farhana, N.K. and Saidi, Norshahirah M. and Ramesh, Subramaniam and Ramesh, Kasi (2018) Conductivity, dielectric studies and structural properties of P(VA-co-PE) and its application in dye sensitized solar cell. Organic Electronics, 56. pp. 116-124. ISSN 1566-1199 https://doi.org/10.1016/j.orgel.2018.02.007 doi:10.1016/j.orgel.2018.02.007
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic Q Science (General)
QC Physics
spellingShingle Q Science (General)
QC Physics
Tan, Chou Yong
Farhana, N.K.
Saidi, Norshahirah M.
Ramesh, Subramaniam
Ramesh, Kasi
Conductivity, dielectric studies and structural properties of P(VA-co-PE) and its application in dye sensitized solar cell
description Poly(vinyl alcohol-co-ethylene), P(VA-co-PE) gel polymer electrolytes (GPEs) with sodium iodide (NaI) as a dopant salt was synthesized and investigated. Electrolytes containing different concentrations of NaI salt were studied using AC impedance spectroscopy, FTIR spectroscopy, and XRD spectroscopy. The results from dielectric studies reveal both the real part and imaginary part of complex permittivity decrease with increasing frequency. An opposite trend was observed when the temperatures of the samples were increased. Besides, the dispersion relation from the modulus studies confirmed that ionic conductivity is dominant in the GPE samples. Results from temperature studies reveal that all GPE samples conform the Arrhenius equation in the temperature range of 303 K to 373 K. The sample with 40% of NaI exhibits the highest ionic conductivity of 2.266 mS cm−1 with the activation energy of 0.16808 eV. Furthermore, FTIR studies proved the complexation between P(VA-co-PE) and NaI. The crystallinity of the samples was shown to be increasing with the increasing concentration of NaI salt via XRD results. Finally, DSSCs were assembled using the polymer electrolyte and used for photovoltaic studies. The best performance of DSSC was obtained with the energy conversion efficiency of 3.32% using the GPE sample with 40% NaI.
format Article
author Tan, Chou Yong
Farhana, N.K.
Saidi, Norshahirah M.
Ramesh, Subramaniam
Ramesh, Kasi
author_facet Tan, Chou Yong
Farhana, N.K.
Saidi, Norshahirah M.
Ramesh, Subramaniam
Ramesh, Kasi
author_sort Tan, Chou Yong
title Conductivity, dielectric studies and structural properties of P(VA-co-PE) and its application in dye sensitized solar cell
title_short Conductivity, dielectric studies and structural properties of P(VA-co-PE) and its application in dye sensitized solar cell
title_full Conductivity, dielectric studies and structural properties of P(VA-co-PE) and its application in dye sensitized solar cell
title_fullStr Conductivity, dielectric studies and structural properties of P(VA-co-PE) and its application in dye sensitized solar cell
title_full_unstemmed Conductivity, dielectric studies and structural properties of P(VA-co-PE) and its application in dye sensitized solar cell
title_sort conductivity, dielectric studies and structural properties of p(va-co-pe) and its application in dye sensitized solar cell
publisher Elsevier
publishDate 2018
url http://eprints.um.edu.my/20546/
https://doi.org/10.1016/j.orgel.2018.02.007
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score 13.159267