Fabrication and characterization of zinc oxide ultraviolet filter for solar cell applications
Zinc oxide (ZnO) thin films are grown and fabricated on cover slips using spray pyrolysis method with a concentration of 0.1M zinc acetate. Three samples were post- annealed at 400°C, 450°C and 500°C. An improved efficiency and a better responsivity were measured from silicon solar cells under conce...
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oai:animorepository.dlsu.edu.ph:faculty_research-114992024-03-18T01:35:59Z Fabrication and characterization of zinc oxide ultraviolet filter for solar cell applications Payod, Renebeth B. Tingzon, Philippe Martin B. Vergara, Christopher Jude T. Estacio, Elmer S. Salvador, Arnel A. Somintac, Armando S. Zinc oxide (ZnO) thin films are grown and fabricated on cover slips using spray pyrolysis method with a concentration of 0.1M zinc acetate. Three samples were post- annealed at 400°C, 450°C and 500°C. An improved efficiency and a better responsivity were measured from silicon solar cells under concentrated light with a 0.1M ZnO UV filter compared to a non-filtered solar cell under one-sun reference light. The spectral response data of the Si solar cell provide solid evidence that energies greater than 3.26 eV (UV) are indeed absorbed by the ZnO UV filter and prevented these high energy light from reaching the solar cell. The optimal parameter for a UV filter is determined to be 0.1M 400°C ZnO film based from the Si solar cell higher efficiency of 0.38% compared to an unfiltered and non-concentrated Si solar cell. 2016-08-01T07:00:00Z text https://animorepository.dlsu.edu.ph/faculty_research/11526 Faculty Research Work Animo Repository Zinc oxide—Optical properties Physics |
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Zinc oxide—Optical properties Physics Payod, Renebeth B. Tingzon, Philippe Martin B. Vergara, Christopher Jude T. Estacio, Elmer S. Salvador, Arnel A. Somintac, Armando S. Fabrication and characterization of zinc oxide ultraviolet filter for solar cell applications |
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Zinc oxide (ZnO) thin films are grown and fabricated on cover slips using spray pyrolysis method with a concentration of 0.1M zinc acetate. Three samples were post- annealed at 400°C, 450°C and 500°C. An improved efficiency and a better responsivity were measured from silicon solar cells under concentrated light with a 0.1M ZnO UV filter compared to a non-filtered solar cell under one-sun reference light. The spectral response data of the Si solar cell provide solid evidence that energies greater than 3.26 eV (UV) are indeed absorbed by the ZnO UV filter and prevented these high energy light from reaching the solar cell. The optimal parameter for a UV filter is determined to be 0.1M 400°C ZnO film based from the Si solar cell higher efficiency of 0.38% compared to an unfiltered and non-concentrated Si solar cell. |
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text |
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Payod, Renebeth B. Tingzon, Philippe Martin B. Vergara, Christopher Jude T. Estacio, Elmer S. Salvador, Arnel A. Somintac, Armando S. |
author_facet |
Payod, Renebeth B. Tingzon, Philippe Martin B. Vergara, Christopher Jude T. Estacio, Elmer S. Salvador, Arnel A. Somintac, Armando S. |
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Payod, Renebeth B. |
title |
Fabrication and characterization of zinc oxide ultraviolet filter for solar cell applications |
title_short |
Fabrication and characterization of zinc oxide ultraviolet filter for solar cell applications |
title_full |
Fabrication and characterization of zinc oxide ultraviolet filter for solar cell applications |
title_fullStr |
Fabrication and characterization of zinc oxide ultraviolet filter for solar cell applications |
title_full_unstemmed |
Fabrication and characterization of zinc oxide ultraviolet filter for solar cell applications |
title_sort |
fabrication and characterization of zinc oxide ultraviolet filter for solar cell applications |
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Animo Repository |
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2016 |
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https://animorepository.dlsu.edu.ph/faculty_research/11526 |
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