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Three-dimensional hexagonal GDC interlayer for area enhancement of low-temperature solid oxide fuel cells
- Bae, Jiwoong;
- Lee, Dohaeng;
- Hong, Soonwook;
- Yang, Hwichul;
- Kim, Young-Beom
WEB OF SCIENCE
21SCOPUS
23초록
A three-dimensional hexagonal gadolinium-doped ceria (GDC) interlayer is fabricated to enhance the cathodic surface area of low-temperature solid oxide fuel cells (LT-SOFCs). By using modified nanosphere lithography method, 3-D nanostructure is successfully fabricated. As a result of the nanostructuring, the 3-D hexagonal GDC interlayer has a 70% increase in cathodic surface area. Electrochemical impedance spectroscopy reveals a 2-fold decrease in the electrode resistance compared with a plane cell, resulting in a current-voltage behavior with a 60% higher peak power density. The superior electrode reaction is attributed to the large surface area (similar to 1.7 times larger) due to the 3-D hexagonal cathodic interlayer. This novel fabrication method can be applied to almost all kinds of LT-SOFC structures, including large-scale and substrate-supported platforms, and thereby it will contribute to commercializing LT-SOFCs.
키워드
- 제목
- Three-dimensional hexagonal GDC interlayer for area enhancement of low-temperature solid oxide fuel cells
- 저자
- Bae, Jiwoong; Lee, Dohaeng; Hong, Soonwook; Yang, Hwichul; Kim, Young-Beom
- 발행일
- 2015-10
- 유형
- Article
- 권
- 279
- 페이지
- 54 ~ 59