The New Design of Dye-Sensitized Solar Cell Adopted by Sputter Deposition of Counter Electrode
スポンサーリンク
概要
- 論文の詳細を見る
The counter electrode widely used in DSCs (Dye-sensitized Solar Cells) is constructed of conducting glass substrates coated with Pt films, where the platinum acts as a catalyst. Pt counter electrodes in DSCs are one important component. It is expected that characteristics of Pt electrodes strongly depend on fabrication process and its surface condition. In this study, Pt counter electrode surface of DSC is deposited by RF sputtering under the conditions of Ar 6.7×10-1 Pa, RF power of 120 W and substrate temperature of 100°C. Surface morphology of Pt electrodes was investigated by FE-SEM and AFM. And this paper shows our recent results and technology to fabricate the new designed cell with Pt electrodes deposited by sputtering method. We have achieved fill factor 68% and photoelectric conversion efficiency around 2.6% as the best results of new designed DSCs structure.
- 日本真空協会の論文
著者
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Kim Hee‐je
Pusan National Univ. Busan Kor
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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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LEE Dong-Yoon
Advanced Materials & Application research Laboratory, Korea Electrotechnology Research Institute
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Kim Yong-chul
Department Of Life Science Gwangju Institute Of Science And Technology
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LEE Im-Geun
Department of Electrical Engineering, Pusan National University Jangjeon-dong
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HONG Ji-Tae
Department of Electrical Engineering, Pusan National University Jangjeon-dong
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KIM Hyun-Ju
Advanced Materials & Application research Laboratory, Korea Electrotechnology Research Institute
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Kim Hee-je
Catholic Univ. Korea Seoul Kor
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CHOI Jin-Young
Department of Electrical Engineering, Pusan National University Jangjeon-dong
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KIM Hyun-Ju
Advanced Materials & Application research Laboratory, Korea Electrotechnology Research Institute
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Choi Im-Geun
Department of Electrical Engineering, Pusan National University Jangjeon-dong
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KIM Hee-Je
Department of Electrical Engineering, Pusan National University Jangjeon-dong
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KIM Hee-Je
Department of Electrical Engineering, Pusan National University
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KIM Yong-Chul
Department of Electrical Engineering, Pusan National University Jangjeon-dong
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