Photovoltaic activity in a ZnTe/PEO–chitosan blend electrolyte junction for Solar Cells Application

Light to electrical Marketability energy conversion is made possible by photovoltaic technology and solar cells. The injection of electrons from a photoexcited state into the conduction band of the semiconductor upon absorption of light forms the basis for electricity generation in the solar cell. s...

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Main Authors: Al-Bat’hi, , Souad A. M., Arof , A.K.
Format: Proceeding Paper
Language:English
Published: 2012
Subjects:
Online Access:http://irep.iium.edu.my/23867/
http://irep.iium.edu.my/23867/1/Science_Engineering_Technology_Poster_Template_2.ppt
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author Al-Bat’hi, , Souad A. M.
Arof , A.K.
author_facet Al-Bat’hi, , Souad A. M.
Arof , A.K.
author_sort Al-Bat’hi, , Souad A. M.
building IIUM Repository
collection Online Access
description Light to electrical Marketability energy conversion is made possible by photovoltaic technology and solar cells. The injection of electrons from a photoexcited state into the conduction band of the semiconductor upon absorption of light forms the basis for electricity generation in the solar cell. solar cells based on liquid electrolytes are widely used, but there are still problems to be solved. Such as electrolyte leakage, solvent evaporation, and high-temperature instability are among the many problems. To solve these problems, solid polymer electrolyte has been used as replacement. A ZnTe/solid polymer junction has been fabricated. The polymer is a blend of 50wt% chitosan and 50wt% polyethylene oxide (PEO). The ionic conductivity of the solid polymer electrolyte is 1.18x10-5 S cm-1 at room temperature. ZnTe was electrodeposited on ITO conducting glass by electrodeposition technique. The polymer film was casted and sandwiched between the ZnTe semiconductor and an ITO glass to form a ZnTe/polymer electrolyte/ITO photovoltaic cell.
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format Proceeding Paper
id iium-23867
institution International Islamic University Malaysia
institution_category Local University
language English
last_indexed 2025-11-14T15:14:20Z
publishDate 2012
recordtype eprints
repository_type Digital Repository
spelling iium-238672013-06-18T07:43:20Z http://irep.iium.edu.my/23867/ Photovoltaic activity in a ZnTe/PEO–chitosan blend electrolyte junction for Solar Cells Application Al-Bat’hi, , Souad A. M. Arof , A.K. TK2896 Production of electricity by direct energy conversion Light to electrical Marketability energy conversion is made possible by photovoltaic technology and solar cells. The injection of electrons from a photoexcited state into the conduction band of the semiconductor upon absorption of light forms the basis for electricity generation in the solar cell. solar cells based on liquid electrolytes are widely used, but there are still problems to be solved. Such as electrolyte leakage, solvent evaporation, and high-temperature instability are among the many problems. To solve these problems, solid polymer electrolyte has been used as replacement. A ZnTe/solid polymer junction has been fabricated. The polymer is a blend of 50wt% chitosan and 50wt% polyethylene oxide (PEO). The ionic conductivity of the solid polymer electrolyte is 1.18x10-5 S cm-1 at room temperature. ZnTe was electrodeposited on ITO conducting glass by electrodeposition technique. The polymer film was casted and sandwiched between the ZnTe semiconductor and an ITO glass to form a ZnTe/polymer electrolyte/ITO photovoltaic cell. 2012-02-22 Proceeding Paper PeerReviewed application/pdf en http://irep.iium.edu.my/23867/1/Science_Engineering_Technology_Poster_Template_2.ppt Al-Bat’hi, , Souad A. M. and Arof , A.K. (2012) Photovoltaic activity in a ZnTe/PEO–chitosan blend electrolyte junction for Solar Cells Application. In: IIUM Research, Invention and Innovation Exhibition 2012 , 22 Feb. 2012, Gombak Malaysia. (Unpublished)
spellingShingle TK2896 Production of electricity by direct energy conversion
Al-Bat’hi, , Souad A. M.
Arof , A.K.
Photovoltaic activity in a ZnTe/PEO–chitosan blend electrolyte junction for Solar Cells Application
title Photovoltaic activity in a ZnTe/PEO–chitosan blend electrolyte junction for Solar Cells Application
title_full Photovoltaic activity in a ZnTe/PEO–chitosan blend electrolyte junction for Solar Cells Application
title_fullStr Photovoltaic activity in a ZnTe/PEO–chitosan blend electrolyte junction for Solar Cells Application
title_full_unstemmed Photovoltaic activity in a ZnTe/PEO–chitosan blend electrolyte junction for Solar Cells Application
title_short Photovoltaic activity in a ZnTe/PEO–chitosan blend electrolyte junction for Solar Cells Application
title_sort photovoltaic activity in a znte/peo–chitosan blend electrolyte junction for solar cells application
topic TK2896 Production of electricity by direct energy conversion
url http://irep.iium.edu.my/23867/
http://irep.iium.edu.my/23867/1/Science_Engineering_Technology_Poster_Template_2.ppt