Polycrystalline Zn_3P_2/Indium-Tin Oxide Solar Cells
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概要
- 論文の詳細を見る
Zinc phosphide (Zn_3P_2)/indium-tin oxide (ITO) heterojunction solar cells are fabricated by rf sputter depositing ITO on large grain polycrystalline Zn_3P_2 wafers. An AES analysis indicates that sputter etching of the Zn_3P_2 wafer surface before depositing ITO is of great importance in achieving a better performance as a solar cell. The passivation of Zn_3P_2 by reaction with atomic hydrogen is found to improve the cell performance significantly. Consequently, a power conversion efficiency of 2.1% (6 mm^2 in active area) has been o btained without antireflection coating.
- 社団法人応用物理学会の論文
- 1983-10-20
著者
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Kurita Shoichi
Department Of Electrical Engineering Faculty Of Engineering Keio University
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Suda Toshikazu
Department Of Electrical Engineering Faculty Of Engineering Keio University
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Suzuki Masahisa
Department Of Electrical Engineering Keio University
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SUDA Toshikazu
Department of Electronics, Institute of Vocational Training
関連論文
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- Internal Loss and Gain Factor of InGaAsP/GaAs Laser
- Dynamic Quenching of Photocapacitance in CdS: Cu Evaporated Thin Films
- n-ITO/p-InGaAsP Solar Cell Fabricated on GaAs Substrate
- Color eletroluminescence from ZnS thin films multi-doped with rare-earth ions.
- Properties of Zn_3P_2 Thin Films Grown by Ionized-Cluster Beam Deposition
- Anodic Oxidation of Zinc Phosphide
- Polycrystalline Zn_3P_2/Indium-Tin Oxide Solar Cells
- Sputtered n-ITO/p-InP Solar Cells : II-1: COMPOUND SOLAR CELLS
- Infrared Quenching of Photocapacitance in ZnS : Ag Evaporated Thin Films
- Influence of Ag Photodoping on Photoinduced Changes in As_2S_3 Glass Films
- Effect of Monatomie Hydrogen in Zinc Phosphide
- Zn_3P_2/ITO Heterojunction Solar Cells : I-3: NEW STRUCTURE AND ADVANCED MATERIAL (1)