Preparation and properties of a new type a-Si:H solar cell based on an organic polymer film are described. Also are discussed the electrical and the optical properties of GD-CVD a-Si:H film used for the cell. The conversion efficiency of an polyimide/sputtered SUS/p-i-n a-Si:H/ITO cell with a size of 9 mm2 was 6.03% under the illumination of 92.5 mW/cm2 (AM-1). Cells on the polyimide film are stable even in high humidity over 150 days and allow flexible folding without any deterioration of the conversion efficiency. However, the conversion efficiency is always somewhat lower as compared with cells on SUS plate. Examining the correlation between the conversion efficiency and the surface morphology of a-Si:H layers, it was revealed that the higher roughness of sputtered SUS layer on polyimide film reduces the output current of the cell.
Hiroshi OKANIWA
Kenji NAKATANI
Mitsuo ASANO
Kazutomi SUZUKI
Mitsuaki YANO
Masao HIRASAKA
Yoshihiro HAMAKAWA
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Hiroshi OKANIWA, Kenji NAKATANI, Mitsuo ASANO, Kazutomi SUZUKI, Mitsuaki YANO, Masao HIRASAKA, Yoshihiro HAMAKAWA, "Hydrogenated Amorphous Silicon Solar Cell on Organic Polymer Substrate" in IEICE TRANSACTIONS on transactions,
vol. E66-E, no. 1, pp. 34-38, January 1983, doi: .
Abstract: Preparation and properties of a new type a-Si:H solar cell based on an organic polymer film are described. Also are discussed the electrical and the optical properties of GD-CVD a-Si:H film used for the cell. The conversion efficiency of an polyimide/sputtered SUS/p-i-n a-Si:H/ITO cell with a size of 9 mm2 was 6.03% under the illumination of 92.5 mW/cm2 (AM-1). Cells on the polyimide film are stable even in high humidity over 150 days and allow flexible folding without any deterioration of the conversion efficiency. However, the conversion efficiency is always somewhat lower as compared with cells on SUS plate. Examining the correlation between the conversion efficiency and the surface morphology of a-Si:H layers, it was revealed that the higher roughness of sputtered SUS layer on polyimide film reduces the output current of the cell.
URL: https://global.ieice.org/en_transactions/transactions/10.1587/e66-e_1_34/_p
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@ARTICLE{e66-e_1_34,
author={Hiroshi OKANIWA, Kenji NAKATANI, Mitsuo ASANO, Kazutomi SUZUKI, Mitsuaki YANO, Masao HIRASAKA, Yoshihiro HAMAKAWA, },
journal={IEICE TRANSACTIONS on transactions},
title={Hydrogenated Amorphous Silicon Solar Cell on Organic Polymer Substrate},
year={1983},
volume={E66-E},
number={1},
pages={34-38},
abstract={Preparation and properties of a new type a-Si:H solar cell based on an organic polymer film are described. Also are discussed the electrical and the optical properties of GD-CVD a-Si:H film used for the cell. The conversion efficiency of an polyimide/sputtered SUS/p-i-n a-Si:H/ITO cell with a size of 9 mm2 was 6.03% under the illumination of 92.5 mW/cm2 (AM-1). Cells on the polyimide film are stable even in high humidity over 150 days and allow flexible folding without any deterioration of the conversion efficiency. However, the conversion efficiency is always somewhat lower as compared with cells on SUS plate. Examining the correlation between the conversion efficiency and the surface morphology of a-Si:H layers, it was revealed that the higher roughness of sputtered SUS layer on polyimide film reduces the output current of the cell.},
keywords={},
doi={},
ISSN={},
month={January},}
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TY - JOUR
TI - Hydrogenated Amorphous Silicon Solar Cell on Organic Polymer Substrate
T2 - IEICE TRANSACTIONS on transactions
SP - 34
EP - 38
AU - Hiroshi OKANIWA
AU - Kenji NAKATANI
AU - Mitsuo ASANO
AU - Kazutomi SUZUKI
AU - Mitsuaki YANO
AU - Masao HIRASAKA
AU - Yoshihiro HAMAKAWA
PY - 1983
DO -
JO - IEICE TRANSACTIONS on transactions
SN -
VL - E66-E
IS - 1
JA - IEICE TRANSACTIONS on transactions
Y1 - January 1983
AB - Preparation and properties of a new type a-Si:H solar cell based on an organic polymer film are described. Also are discussed the electrical and the optical properties of GD-CVD a-Si:H film used for the cell. The conversion efficiency of an polyimide/sputtered SUS/p-i-n a-Si:H/ITO cell with a size of 9 mm2 was 6.03% under the illumination of 92.5 mW/cm2 (AM-1). Cells on the polyimide film are stable even in high humidity over 150 days and allow flexible folding without any deterioration of the conversion efficiency. However, the conversion efficiency is always somewhat lower as compared with cells on SUS plate. Examining the correlation between the conversion efficiency and the surface morphology of a-Si:H layers, it was revealed that the higher roughness of sputtered SUS layer on polyimide film reduces the output current of the cell.
ER -