Investigation of optical and photoelectric properties of poly (ohydroxyamide) sensitized by phthalocyanine as a perspective material for solar cells
Optical and photoelectric properties of poly (ohydroxyamide) (PHA) sensitized with zinc phthalocyanines were investigated in the visible and near infrared spectral regions. The structures were deposited on glass substrates by centrifugation and subsequent drying of a PHA film without thermal anneali...
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2020-01-01
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doaj-58df7b4071ee4aef93f4e700af0fd7732021-04-02T18:46:55ZengEDP SciencesE3S Web of Conferences2267-12422020-01-012200101910.1051/e3sconf/202022001019e3sconf_ses2020_01019Investigation of optical and photoelectric properties of poly (ohydroxyamide) sensitized by phthalocyanine as a perspective material for solar cellsFazalova Elvira0Kochunov Konstantin1Bodyago Elena2Konoplev Georgii3Mukhin Nikolay4Sokolova Irina5Chigirev Dmitrii6Ziminov Andrey7Rudaya Ludmila8Lebedeva Galina9Saint-Petersburg Electrotechnical UniversitySaint-Petersburg Electrotechnical UniversitySaint-Petersburg Electrotechnical UniversitySaint-Petersburg Electrotechnical UniversitySaint-Petersburg Electrotechnical UniversitySaint-Petersburg Electrotechnical UniversitySaint-Petersburg Electrotechnical UniversitySaint-Petersburg State Institute of Technology (Technical University)Saint-Petersburg State Institute of Technology (Technical University)Institute of Macromolecular Compounds RASOptical and photoelectric properties of poly (ohydroxyamide) (PHA) sensitized with zinc phthalocyanines were investigated in the visible and near infrared spectral regions. The structures were deposited on glass substrates by centrifugation and subsequent drying of a PHA film without thermal annealing. Optical spectra revealed characteristic absorption peaks of phthalocyanine in the longer wavelength region at 620-640 nm and 680-700 nm; absorption of the PHA matrix monotonously increases to the shorter wavelengths starting from 700 nm. Measurements of the photocurrent under irradiation with a high-power LED at a wavelength 630 nm showed photoconductivity related to the organic dye; photoconductivity also was observed while irradiated at 540 nm, presumably due to the absorption of PHA matrix. For non-sensitized (dye-free) PHA films no detectable photocurrents were produced by 630 nm irradiation. It was shown that introducing of phthalocyanines significantly improves optical absorption and photoconductivity of PHA thin films at the wavelengths, where the maximum in the spectral distribution of solar radiation lies. It was concluded that phthalocyanine-sensitized PHA has the potential use as a photosensitive organic material for solar applications, for example in developing composite organicinorganic structures with ferroelectrics.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/80/e3sconf_ses2020_01019.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Fazalova Elvira Kochunov Konstantin Bodyago Elena Konoplev Georgii Mukhin Nikolay Sokolova Irina Chigirev Dmitrii Ziminov Andrey Rudaya Ludmila Lebedeva Galina |
spellingShingle |
Fazalova Elvira Kochunov Konstantin Bodyago Elena Konoplev Georgii Mukhin Nikolay Sokolova Irina Chigirev Dmitrii Ziminov Andrey Rudaya Ludmila Lebedeva Galina Investigation of optical and photoelectric properties of poly (ohydroxyamide) sensitized by phthalocyanine as a perspective material for solar cells E3S Web of Conferences |
author_facet |
Fazalova Elvira Kochunov Konstantin Bodyago Elena Konoplev Georgii Mukhin Nikolay Sokolova Irina Chigirev Dmitrii Ziminov Andrey Rudaya Ludmila Lebedeva Galina |
author_sort |
Fazalova Elvira |
title |
Investigation of optical and photoelectric properties of poly (ohydroxyamide) sensitized by phthalocyanine as a perspective material for solar cells |
title_short |
Investigation of optical and photoelectric properties of poly (ohydroxyamide) sensitized by phthalocyanine as a perspective material for solar cells |
title_full |
Investigation of optical and photoelectric properties of poly (ohydroxyamide) sensitized by phthalocyanine as a perspective material for solar cells |
title_fullStr |
Investigation of optical and photoelectric properties of poly (ohydroxyamide) sensitized by phthalocyanine as a perspective material for solar cells |
title_full_unstemmed |
Investigation of optical and photoelectric properties of poly (ohydroxyamide) sensitized by phthalocyanine as a perspective material for solar cells |
title_sort |
investigation of optical and photoelectric properties of poly (ohydroxyamide) sensitized by phthalocyanine as a perspective material for solar cells |
publisher |
EDP Sciences |
series |
E3S Web of Conferences |
issn |
2267-1242 |
publishDate |
2020-01-01 |
description |
Optical and photoelectric properties of poly (ohydroxyamide) (PHA) sensitized with zinc phthalocyanines were investigated in the visible and near infrared spectral regions. The structures were deposited on glass substrates by centrifugation and subsequent drying of a PHA film without thermal annealing. Optical spectra revealed characteristic absorption peaks of phthalocyanine in the longer wavelength region at 620-640 nm and 680-700 nm; absorption of the PHA matrix monotonously increases to the shorter wavelengths starting from 700 nm. Measurements of the photocurrent under irradiation with a high-power LED at a wavelength 630 nm showed photoconductivity related to the organic dye; photoconductivity also was observed while irradiated at 540 nm, presumably due to the absorption of PHA matrix. For non-sensitized (dye-free) PHA films no detectable photocurrents were produced by 630 nm irradiation. It was shown that introducing of phthalocyanines significantly improves optical absorption and photoconductivity of PHA thin films at the wavelengths, where the maximum in the spectral distribution of solar radiation lies. It was concluded that phthalocyanine-sensitized PHA has the potential use as a photosensitive organic material for solar applications, for example in developing composite organicinorganic structures with ferroelectrics. |
url |
https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/80/e3sconf_ses2020_01019.pdf |
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