Enhanced Photovoltaic Performance of Polymer Hybrid Nanostructure Heterojunction Solar Cells Based on Poly(3-hexylthiophene)/ZnS/ZnO/Reduced Graphene Oxide Shell–Core Nanorod Arrays

A novel hybrid photoanode based on poly(3-hexylthiophene) (P3HT) modified ZnS/ZnO shell–core nanorod arrays was fabricated on indium tin oxide (ITO) modified reduced graphene oxide (rGO) film using a simple sequential electrodeposition process. The morphology and structure of the as-fabricated elect...

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Main Authors: Sookhakian, M., Amin, Yusoff Mohd, Zakaria, Rozalina, Baradaran, S., Mahmoudian, M.R., Rezayi, M., Tajabadi, M.T., Basirun, Wan Jefrey
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Published: American Chemical Society 2014
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Online Access:http://eprints.um.edu.my/12162/
http://pubs.acs.org/doi/abs/10.1021/ie501677r
http://doi.org/10.1021/ie501677r
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spelling my.um.eprints.121622019-01-31T07:34:10Z http://eprints.um.edu.my/12162/ Enhanced Photovoltaic Performance of Polymer Hybrid Nanostructure Heterojunction Solar Cells Based on Poly(3-hexylthiophene)/ZnS/ZnO/Reduced Graphene Oxide Shell–Core Nanorod Arrays Sookhakian, M. Amin, Yusoff Mohd Zakaria, Rozalina Baradaran, S. Mahmoudian, M.R. Rezayi, M. Tajabadi, M.T. Basirun, Wan Jefrey Q Science (General) A novel hybrid photoanode based on poly(3-hexylthiophene) (P3HT) modified ZnS/ZnO shell–core nanorod arrays was fabricated on indium tin oxide (ITO) modified reduced graphene oxide (rGO) film using a simple sequential electrodeposition process. The morphology and structure of the as-fabricated electrode were confirmed by X-ray diffraction, field emission electron microscopy, and high-resolution transmission electron microscopy. The electrochemical impedance spectroscopy and current–voltage curve measurements illustrated that the power conversion efficiency of the P3HT/ZnO nanorod arrays electrode was significantly improved by the formation of rGO film and type II band alignment in the heterostructure ZnS/ZnO shell–core nanorod arrays in the four-component P3HT/ZnS/ZnO/rGO electrode. On the basis of these results, P3HT as an excellent hole acceptor, ZnS as an electronic mediator, ZnO as an excellent electron acceptor and direct pathway, and rGO nanosheet as a superior conductive collector and transporter have been shown to have in total a significant effect on increasing photovoltaic efficiency. American Chemical Society 2014 Article PeerReviewed Sookhakian, M. and Amin, Yusoff Mohd and Zakaria, Rozalina and Baradaran, S. and Mahmoudian, M.R. and Rezayi, M. and Tajabadi, M.T. and Basirun, Wan Jefrey (2014) Enhanced Photovoltaic Performance of Polymer Hybrid Nanostructure Heterojunction Solar Cells Based on Poly(3-hexylthiophene)/ZnS/ZnO/Reduced Graphene Oxide Shell–Core Nanorod Arrays. Industrial and Engineering Chemistry Research, 53 (37). pp. 14301-14309. ISSN 0888-5885 http://pubs.acs.org/doi/abs/10.1021/ie501677r http://doi.org/10.1021/ie501677r
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)
spellingShingle Q Science (General)
Sookhakian, M.
Amin, Yusoff Mohd
Zakaria, Rozalina
Baradaran, S.
Mahmoudian, M.R.
Rezayi, M.
Tajabadi, M.T.
Basirun, Wan Jefrey
Enhanced Photovoltaic Performance of Polymer Hybrid Nanostructure Heterojunction Solar Cells Based on Poly(3-hexylthiophene)/ZnS/ZnO/Reduced Graphene Oxide Shell–Core Nanorod Arrays
description A novel hybrid photoanode based on poly(3-hexylthiophene) (P3HT) modified ZnS/ZnO shell–core nanorod arrays was fabricated on indium tin oxide (ITO) modified reduced graphene oxide (rGO) film using a simple sequential electrodeposition process. The morphology and structure of the as-fabricated electrode were confirmed by X-ray diffraction, field emission electron microscopy, and high-resolution transmission electron microscopy. The electrochemical impedance spectroscopy and current–voltage curve measurements illustrated that the power conversion efficiency of the P3HT/ZnO nanorod arrays electrode was significantly improved by the formation of rGO film and type II band alignment in the heterostructure ZnS/ZnO shell–core nanorod arrays in the four-component P3HT/ZnS/ZnO/rGO electrode. On the basis of these results, P3HT as an excellent hole acceptor, ZnS as an electronic mediator, ZnO as an excellent electron acceptor and direct pathway, and rGO nanosheet as a superior conductive collector and transporter have been shown to have in total a significant effect on increasing photovoltaic efficiency.
format Article
author Sookhakian, M.
Amin, Yusoff Mohd
Zakaria, Rozalina
Baradaran, S.
Mahmoudian, M.R.
Rezayi, M.
Tajabadi, M.T.
Basirun, Wan Jefrey
author_facet Sookhakian, M.
Amin, Yusoff Mohd
Zakaria, Rozalina
Baradaran, S.
Mahmoudian, M.R.
Rezayi, M.
Tajabadi, M.T.
Basirun, Wan Jefrey
author_sort Sookhakian, M.
title Enhanced Photovoltaic Performance of Polymer Hybrid Nanostructure Heterojunction Solar Cells Based on Poly(3-hexylthiophene)/ZnS/ZnO/Reduced Graphene Oxide Shell–Core Nanorod Arrays
title_short Enhanced Photovoltaic Performance of Polymer Hybrid Nanostructure Heterojunction Solar Cells Based on Poly(3-hexylthiophene)/ZnS/ZnO/Reduced Graphene Oxide Shell–Core Nanorod Arrays
title_full Enhanced Photovoltaic Performance of Polymer Hybrid Nanostructure Heterojunction Solar Cells Based on Poly(3-hexylthiophene)/ZnS/ZnO/Reduced Graphene Oxide Shell–Core Nanorod Arrays
title_fullStr Enhanced Photovoltaic Performance of Polymer Hybrid Nanostructure Heterojunction Solar Cells Based on Poly(3-hexylthiophene)/ZnS/ZnO/Reduced Graphene Oxide Shell–Core Nanorod Arrays
title_full_unstemmed Enhanced Photovoltaic Performance of Polymer Hybrid Nanostructure Heterojunction Solar Cells Based on Poly(3-hexylthiophene)/ZnS/ZnO/Reduced Graphene Oxide Shell–Core Nanorod Arrays
title_sort enhanced photovoltaic performance of polymer hybrid nanostructure heterojunction solar cells based on poly(3-hexylthiophene)/zns/zno/reduced graphene oxide shell–core nanorod arrays
publisher American Chemical Society
publishDate 2014
url http://eprints.um.edu.my/12162/
http://pubs.acs.org/doi/abs/10.1021/ie501677r
http://doi.org/10.1021/ie501677r
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