Full metadata record
DC Field | Value | Language |
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dc.contributor.author | Noh, Ho-Sung | - |
dc.contributor.author | Hong, Jongsup | - |
dc.contributor.author | Kim, Hyoungchul | - |
dc.contributor.author | Yoon, Kyung Joong | - |
dc.contributor.author | Kim, Byung-Kook | - |
dc.contributor.author | Lee, Hae-Weon | - |
dc.contributor.author | Lee, Jong-Ho | - |
dc.contributor.author | Son, Ji-Won | - |
dc.date.accessioned | 2024-01-20T04:33:17Z | - |
dc.date.available | 2024-01-20T04:33:17Z | - |
dc.date.created | 2021-09-03 | - |
dc.date.issued | 2016-04 | - |
dc.identifier.issn | 0013-4651 | - |
dc.identifier.uri | https://pubs.kist.re.kr/handle/201004/124263 | - |
dc.description.abstract | The feasibility of fabricating large-area thin-film solid oxide fuel cells (TF-SOFC) using a commercially viable vapor deposition technology-i.e., sputtering in the present study-is investigated. By using a 2-inch sputtering system, a multi-scale-architecture platform consisting of a nanostructured NiO-yttria-stabilized zirconia (YSZ) anode and an approximately 750 nm-thick YSZ/gadolinia-doped ceria (GDC) bilayer is successfully fabricated over a 5 x 5 cm NiO-YSZ anode support. An open cell voltage (OCV) of 1.1 V and a peak power density exceeding 1.2 W cm(-2) at 600 degrees C are obtained. The total power output at 0.7 V from the 5-cm-by-5 cm TF-SOFC reaches 15.52 W at 600 degrees C and 9.76 W at 550 degrees C. The total maximum power outputs are 19.52 and 14.08 W at 600 and 550 degrees C, respectively. To our knowledge, this is the highest total power output from a vapor deposition-based SOFC. The present study demonstrates the possibility of transferring this multi-scale-architecture TF-SOFC technology to the industrial sector using commercial thin-film technologies. (C) 2016 The Electrochemical Society. All rights reserved. | - |
dc.language | English | - |
dc.publisher | ELECTROCHEMICAL SOC INC | - |
dc.subject | YTTRIA-STABILIZED-ZIRCONIA | - |
dc.subject | PULSED-LASER DEPOSITION | - |
dc.subject | CHEMICAL SOLUTION DEPOSITION | - |
dc.subject | ELECTROLYTE LAYERS | - |
dc.subject | SPRAY-PYROLYSIS | - |
dc.subject | SOFC | - |
dc.subject | TEMPERATURE | - |
dc.subject | PERFORMANCE | - |
dc.subject | MICROSTRUCTURE | - |
dc.subject | ANODE | - |
dc.title | Scale-Up of Thin-Film Deposition-Based Solid Oxide Fuel Cell by Sputtering, a Commercially Viable Thin-Film Technology | - |
dc.type | Article | - |
dc.identifier.doi | 10.1149/2.0331607jes | - |
dc.description.journalClass | 1 | - |
dc.identifier.bibliographicCitation | JOURNAL OF THE ELECTROCHEMICAL SOCIETY, v.163, no.7, pp.F613 - F617 | - |
dc.citation.title | JOURNAL OF THE ELECTROCHEMICAL SOCIETY | - |
dc.citation.volume | 163 | - |
dc.citation.number | 7 | - |
dc.citation.startPage | F613 | - |
dc.citation.endPage | F617 | - |
dc.description.journalRegisteredClass | scie | - |
dc.description.journalRegisteredClass | scopus | - |
dc.identifier.wosid | 000377412900097 | - |
dc.identifier.scopusid | 2-s2.0-84964689105 | - |
dc.relation.journalWebOfScienceCategory | Electrochemistry | - |
dc.relation.journalWebOfScienceCategory | Materials Science, Coatings & Films | - |
dc.relation.journalResearchArea | Electrochemistry | - |
dc.relation.journalResearchArea | Materials Science | - |
dc.type.docType | Article | - |
dc.subject.keywordPlus | YTTRIA-STABILIZED-ZIRCONIA | - |
dc.subject.keywordPlus | PULSED-LASER DEPOSITION | - |
dc.subject.keywordPlus | CHEMICAL SOLUTION DEPOSITION | - |
dc.subject.keywordPlus | ELECTROLYTE LAYERS | - |
dc.subject.keywordPlus | SPRAY-PYROLYSIS | - |
dc.subject.keywordPlus | SOFC | - |
dc.subject.keywordPlus | TEMPERATURE | - |
dc.subject.keywordPlus | PERFORMANCE | - |
dc.subject.keywordPlus | MICROSTRUCTURE | - |
dc.subject.keywordPlus | ANODE | - |
dc.subject.keywordAuthor | low-temperature SOFC | - |
dc.subject.keywordAuthor | scale up | - |
dc.subject.keywordAuthor | sputtering | - |
dc.subject.keywordAuthor | thin-film solid oxide fuel cell | - |
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