Selenization effects on photovoltaic properties of spray pyrolyzed CuInS2, and CuInS2/In2S3 bi-layer

Current methods for fabricating a CuInSxSe2-x solar cell have proven costly and sometimes require toxic chemicals and methods such as KCN etching and H2Se selenization. Spray pyrolysis has been deemed as one of the cheapest and easiest method of fabricating a solar cell, but is limited by small grai...

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Main Author: Woon, Mark Tian Cheng.
Other Authors: Ma Baoshan
Format: Final Year Project
Language:English
Published: 2012
Subjects:
Online Access:http://hdl.handle.net/10356/48434
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-484342023-03-04T15:34:41Z Selenization effects on photovoltaic properties of spray pyrolyzed CuInS2, and CuInS2/In2S3 bi-layer Woon, Mark Tian Cheng. Ma Baoshan School of Materials Science and Engineering Energetics Research Institute Lydia Helena Wong DRNTU::Engineering::Materials::Energy materials Current methods for fabricating a CuInSxSe2-x solar cell have proven costly and sometimes require toxic chemicals and methods such as KCN etching and H2Se selenization. Spray pyrolysis has been deemed as one of the cheapest and easiest method of fabricating a solar cell, but is limited by small grain sizes which limit efficiency. Presented is a method of obtaining large grains via spray pyrolysis of a CuInS2/In2S3 bi-layer and selenization using Se vapour, while showing the effects on photovoltaic parameters of a solar cell. Effects of spray pyrolysis parameters were observed on glass substrates, following which selenization of a CuInS2/In2S3 bi-layer was performed. Full devices were fabricated on ITO, FTO and Molybdenum substrates. Selenization of a CuInS2/In2S3 bi-layer on FTO substrate was performed to demonstrate the positive effects of grain growth and photovoltaic properties of a cell. The larger grains observed on the FTO substrates also showed improvements in cell parameters as compared to the un-selenized absorber layers on ITO. Selenization of CuInS2 layer was done on Molybdenum and a device was fabricated with efficiencies of 3.47%. This paves the way for promoting spray pyrolysis and selenization of a CuInS2/In2S3 bi-layer as a feasible process for the fabrication of a solar cell, avoiding toxic processes such as KCN etching and an alternative use of Se vapour as opposed to H2Se gas for selenization. Bachelor of Engineering (Materials Engineering) 2012-04-23T08:33:46Z 2012-04-23T08:33:46Z 2012 2012 Final Year Project (FYP) http://hdl.handle.net/10356/48434 en Nanyang Technological University 56 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Materials::Energy materials
spellingShingle DRNTU::Engineering::Materials::Energy materials
Woon, Mark Tian Cheng.
Selenization effects on photovoltaic properties of spray pyrolyzed CuInS2, and CuInS2/In2S3 bi-layer
description Current methods for fabricating a CuInSxSe2-x solar cell have proven costly and sometimes require toxic chemicals and methods such as KCN etching and H2Se selenization. Spray pyrolysis has been deemed as one of the cheapest and easiest method of fabricating a solar cell, but is limited by small grain sizes which limit efficiency. Presented is a method of obtaining large grains via spray pyrolysis of a CuInS2/In2S3 bi-layer and selenization using Se vapour, while showing the effects on photovoltaic parameters of a solar cell. Effects of spray pyrolysis parameters were observed on glass substrates, following which selenization of a CuInS2/In2S3 bi-layer was performed. Full devices were fabricated on ITO, FTO and Molybdenum substrates. Selenization of a CuInS2/In2S3 bi-layer on FTO substrate was performed to demonstrate the positive effects of grain growth and photovoltaic properties of a cell. The larger grains observed on the FTO substrates also showed improvements in cell parameters as compared to the un-selenized absorber layers on ITO. Selenization of CuInS2 layer was done on Molybdenum and a device was fabricated with efficiencies of 3.47%. This paves the way for promoting spray pyrolysis and selenization of a CuInS2/In2S3 bi-layer as a feasible process for the fabrication of a solar cell, avoiding toxic processes such as KCN etching and an alternative use of Se vapour as opposed to H2Se gas for selenization.
author2 Ma Baoshan
author_facet Ma Baoshan
Woon, Mark Tian Cheng.
format Final Year Project
author Woon, Mark Tian Cheng.
author_sort Woon, Mark Tian Cheng.
title Selenization effects on photovoltaic properties of spray pyrolyzed CuInS2, and CuInS2/In2S3 bi-layer
title_short Selenization effects on photovoltaic properties of spray pyrolyzed CuInS2, and CuInS2/In2S3 bi-layer
title_full Selenization effects on photovoltaic properties of spray pyrolyzed CuInS2, and CuInS2/In2S3 bi-layer
title_fullStr Selenization effects on photovoltaic properties of spray pyrolyzed CuInS2, and CuInS2/In2S3 bi-layer
title_full_unstemmed Selenization effects on photovoltaic properties of spray pyrolyzed CuInS2, and CuInS2/In2S3 bi-layer
title_sort selenization effects on photovoltaic properties of spray pyrolyzed cuins2, and cuins2/in2s3 bi-layer
publishDate 2012
url http://hdl.handle.net/10356/48434
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