A Surface Resistance Effect on the Fabrication of Dye-sensitized Solar Cell with Various Widths
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概要
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Sputter deposition followed by surface treatment was studied using reactive RF plasma as a method for preparing titanium oxide (TiO2) films on the FTO (fluorine doped tin oxide, SnO2: F) substrate for dye-sensitized solar cells (DSCs). Anatase structure TiO2 films deposited by reactive RF magnetron sputtering under the conditions of Ar/O2 (5%) mixing gas, RF power of 600 W and substrate temperature of 400°C were surface-treated by inductive coupled plasma (ICP) with Ar/O2 mixing gas at substrate temperature of 400°C, and thus the films were applied to the DSCs. We have chosen a solar cell width as a variable of a large-scaled DSCs and confirmed electric characteristics of an individual cell. As a result, the higher the internal resistance of DSC becomes, the wider the width gets. Internal resistance makes it difficult to collect photoelectron generated from dye. Ultimately up sizing DSC causes the increase of internal resistance and then has a bad effect on the cell characteristics.
著者
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CHOI Jin-Young
Department of Computer Science and Engineering, Korea University
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KIM Mi-Jeong
Department of Information & Communications Engineering, Sejong University
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Kim Hee-je
Department Of Internal Medicine Catholic Hemopoietic Stem Cell Transplantation Center
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Kim Hee-je
Department Of Hematology Catholic Blood And Marrow Transplantation Center College Of Medicine Seoul
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Choi Jin-young
Department Of Computer Science And Engineering Korea University
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Seo Hyun-Woong
Department of Electrical Engineering, Pusan National University
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SIM Ji-Young
Department of Electrical Engineering, Pusan National University
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LEE Dong-Yoon
Advanced Materials & Application research Laboratory, Korea Electrotechnology Research Institute
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KIM Mi-Jeong
Department of Electrical Engineering, Pusan National University
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CHOI Jin-Young
Department of Electrical Engineering, Pusan National University
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KIM Hee-Je
Department of Electrical Engineering, Pusan National University
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LEE Dong-Yoon
Advanced Materials & Application research Laboratory, Korea Electrotechnology Research Institute
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