전사법으로 제조한 SOFC용 YSZ 전해질 전사지의 치밀화 및 전기화학적 특성

Decalcomania is a new method for SOFCs (solid oxide fuel cells) unit cell fabrication. A tight and dense 5 ㎛Yttria-stabilized zirconia (8YSZ) electrolyte layer on anode substrate was fabricated by the decalcomania method. After 8YSZ as the electrolyte starting material was calcined at 1200℃, the par...

Full description

Saved in:
Bibliographic Details
Published in대한금속·재료학회지, 50(9) Vol. 50; no. 9; pp. 685 - 690
Main Authors 조해란, Hae Ran Cho, 최병현, Byung Hyun Choi, 안용태, Yong Tae An, 백성현, Sung Hyeon Baeck, 노광철, Kwang Chul Roh, 박선민, Sun Min Park
Format Journal Article
LanguageKorean
Published 대한금속재료학회 20.09.2012
대한금속·재료학회
Subjects
Online AccessGet full text
ISSN1738-8228
2288-8241
DOI10.3365/KJMM.2012.50.9.685

Cover

Abstract Decalcomania is a new method for SOFCs (solid oxide fuel cells) unit cell fabrication. A tight and dense 5 ㎛Yttria-stabilized zirconia (8YSZ) electrolyte layer on anode substrate was fabricated by the decalcomania method. After 8YSZ as the electrolyte starting material was calcined at 1200℃, the particle size was controlled by the attrition mill. The median particle size (D50) of each 8YSZ was 39.6 ㎛, 9.30 ㎛, 6.35 ㎛, and 3.16 ㎛, respectively. The anode substrate was coated with decalcomania papers which were made by using 8YSZ with different median particle sizes. In order to investigate the effect of median particle sizes and sintering conditions on the electrolyte density, each sample was sintered for 2, 5 and 10 h, respectively. 8YSZ with a median particle size of 3.16 ㎛which was sintered at 1400℃ for 10 had the highest density. With this 8YSZ, a SOFCs unit cell was manufactured with a 5 ㎛layer by the decalcomania method. Then the unit cell was run at 800℃. The Open Circuit Voltage (OCV) and Maximum power density (MPD) was 1.12 V and 650 mW/cm2, respectively.
AbstractList Decalcomania is a new method for SOFCs (solid oxide fuel cells) unit cell fabrication. A tight and dense 5 ㎛Yttria-stabilized zirconia (8YSZ) electrolyte layer on anode substrate was fabricated by the decalcomania method. After 8YSZ as the electrolyte starting material was calcined at 1200℃, the particle size was controlled by the attrition mill. The median particle size (D50) of each 8YSZ was 39.6 ㎛, 9.30 ㎛, 6.35 ㎛, and 3.16 ㎛, respectively. The anode substrate was coated with decalcomania papers which were made by using 8YSZ with different median particle sizes. In order to investigate the effect of median particle sizes and sintering conditions on the electrolyte density, each sample was sintered for 2, 5 and 10 h, respectively. 8YSZ with a median particle size of 3.16 ㎛which was sintered at 1400℃ for 10 had the highest density. With this 8YSZ, a SOFCs unit cell was manufactured with a 5 ㎛layer by the decalcomania method. Then the unit cell was run at 800℃. The Open Circuit Voltage (OCV) and Maximum power density (MPD) was 1.12 V and 650 mW/cm2, respectively.
Decalcomania is a new method for SOFCs (solid oxide fuel cells) unit cell fabrication. A tight and dense 5 ㎛ Yttria-stabilized zirconia (8YSZ) electrolyte layer on anode substrate was fabricated by the decalcomania method. After 8YSZ as the electrolyte starting material was calcined at 1200℃, the particle size was controlled by the attrition mill. The median particle size (D50) of each 8YSZ was 39.6 ㎛, 9.30 ㎛,6.35 ㎛, and 3.16 ㎛, respectively. The anode substrate was coated with decalcomania papers which were made by using 8YSZ with different median particle sizes. In order to investigate the effect of median particle sizes and sintering conditions on the electrolyte density, each sample was sintered for 2, 5 and 10 h, respectively. 8YSZ with a median particle size of 3.16 ㎛ which was sintered at 1400℃ for 10 had the highest density. With this 8YSZ, a SOFCs unit cell was manufactured with a 5 ㎛ layer by the decalcomania method. Then the unit cell was run at 800℃. The Open Circuit Voltage (OCV) and Maximum power density (MPD) was 1.12 V and 650 mW/cm2, respectively. KCI Citation Count: 3
Author Byung Hyun Choi
Sung Hyeon Baeck
최병현
조해란
안용태
Yong Tae An
노광철
Kwang Chul Roh
Hae Ran Cho
박선민
Sun Min Park
백성현
Author_xml – sequence: 1
  fullname: 조해란
– sequence: 2
  fullname: Hae Ran Cho
– sequence: 3
  fullname: 최병현
– sequence: 4
  fullname: Byung Hyun Choi
– sequence: 5
  fullname: 안용태
– sequence: 6
  fullname: Yong Tae An
– sequence: 7
  fullname: 백성현
– sequence: 8
  fullname: Sung Hyeon Baeck
– sequence: 9
  fullname: 노광철
– sequence: 10
  fullname: Kwang Chul Roh
– sequence: 11
  fullname: 박선민
– sequence: 12
  fullname: Sun Min Park
BackLink https://www.kci.go.kr/kciportal/ci/sereArticleSearch/ciSereArtiView.kci?sereArticleSearchBean.artiId=ART001695551$$DAccess content in National Research Foundation of Korea (NRF)
BookMark eNotjzFLw0AYhg-pYK39A7rc6JJ4ucsll7EUq9WWgu2iy5E0FwnRVpLJTaWDuLgYaCVCOxXBIYqDBX-RufwHU-v0fu_7Pd8H7yYoDYYDAcC2hlRCDLp3fNRuqxhpWKVItVSD0TVQxpgxhWFdK4GyZpLljNkGqEaR7yBkYANTHZWBLacjefeWfcQy-c5mCZTTRM7SPE5gt9Ooy-dXeNo9K9JRHn_K-T1c8XJ-I1_GUC7GWXqTT55glj4uVz9faeHyeCKntzB_WMjR-xZY9-yLSFT_tQJ6jf1e_VBpdQ6a9VpLCSgxFUF1DxO7T5Hlmsx2XM8VmAjKBKWusJipI6K5HukbniMchi1NLxrrpLhCRKeCVMDu6u0g9HjQ9_nQ9v_0fMiDkNdOek1uIkyxWaA7KzTwo4hfhf6lHV5zghgxmEZ-AZq9feM
ContentType Journal Article
DBID HZB
Q5X
ACYCR
DOI 10.3365/KJMM.2012.50.9.685
DatabaseName Korea Information Science Society (KISS)
Korean Studies Information Service System (KISS) B-Type
Korean Citation Index
DatabaseTitleList

DeliveryMethod fulltext_linktorsrc
DocumentTitleAlternate 전사법으로 제조한 SOFC용 YSZ 전해질 전사지의 치밀화 및 전기화학적 특성
Densification and Electrochemical Properties of YSZ Electrolyte Decalcomania Paper for SOFCs by Decalcomania
EISSN 2288-8241
EndPage 690
ExternalDocumentID oai_kci_go_kr_ARTI_702527
3083681
GroupedDBID ALMA_UNASSIGNED_HOLDINGS
HZB
M~E
Q5X
ACYCR
ID FETCH-LOGICAL-k537-e54f23ac509d78abdfde23e58e55de9874031df3c6fbeb82914201434f20345e3
ISSN 1738-8228
IngestDate Sun Mar 09 07:53:16 EDT 2025
Thu Jan 16 03:39:07 EST 2025
IsPeerReviewed true
IsScholarly true
Issue 9
Language Korean
LinkModel OpenURL
MergedId FETCHMERGED-LOGICAL-k537-e54f23ac509d78abdfde23e58e55de9874031df3c6fbeb82914201434f20345e3
Notes The Korean Institute of Metals and Materials
http://210.101.116.102/journal_korea/detail_01.asp?a_key=3083681
G704-000085.2012.50.9.008
PageCount 6
ParticipantIDs nrf_kci_oai_kci_go_kr_ARTI_702527
kiss_primary_3083681
PublicationCentury 2000
PublicationDate 20120920
PublicationDateYYYYMMDD 2012-09-20
PublicationDate_xml – month: 09
  year: 2012
  text: 20120920
  day: 20
PublicationDecade 2010
PublicationTitle 대한금속·재료학회지, 50(9)
PublicationTitleAlternate 대한금속재료학회지
PublicationYear 2012
Publisher 대한금속재료학회
대한금속·재료학회
Publisher_xml – name: 대한금속재료학회
– name: 대한금속·재료학회
SSID ssib006262540
ssib022232341
ssib044734076
ssib023167440
ssib036264765
ssib001148846
ssib002806993
ssib014806100
Score 1.8479319
Snippet Decalcomania is a new method for SOFCs (solid oxide fuel cells) unit cell fabrication. A tight and dense 5 ㎛Yttria-stabilized zirconia (8YSZ) electrolyte layer...
Decalcomania is a new method for SOFCs (solid oxide fuel cells) unit cell fabrication. A tight and dense 5 ㎛ Yttria-stabilized zirconia (8YSZ) electrolyte...
SourceID nrf
kiss
SourceType Open Website
Publisher
StartPage 685
SubjectTerms decalcomania
electrical properties
electrolyte densification
SOFC
YSZ
Yttria-stabilized Zirconia
재료공학
Title 전사법으로 제조한 SOFC용 YSZ 전해질 전사지의 치밀화 및 전기화학적 특성
URI https://kiss.kstudy.com/ExternalLink/Ar?key=3083681
https://www.kci.go.kr/kciportal/ci/sereArticleSearch/ciSereArtiView.kci?sereArticleSearchBean.artiId=ART001695551
Volume 50
hasFullText 1
inHoldings 1
isFullTextHit
isPrint
ispartofPNX 대한금속·재료학회지, 2012, 50(9), 470, pp.685-690
link http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwrR1Nb9MwNBrjwgWBBmJ8KUj4FKUktpPYx6TrVIYKEhvS4BK1qQtTpRaN7QAHNNCEEBcuVNpQkbbThMShIA5M4hfR9D_wntM2YewAiIvrPj8_-_nl2e8l9rNhXAdHB0SbBLabgDbxuqjbUirfTkSTJlyvcvi-o3bbr97jS6ve6syJV4VdS5sbjVLy7NhzJf8iVYCBXPGU7F9IdkoUAJAH-UIKEob0j2RMKmUSOkRwzAhKwjKpRCSiRHoIkWUSaUjoQt4aYwMUMy6JHFJZQFQoW76zqMEyJKG07i8_sAq0NVKkGwkDIoR1XLtZmaOJQIUMKZKQ031ydBkUAIRbE9BikVRIIjHpFGJNeicnOK6FIBEiWWyYk8gtGtdIVZQnDXmaU01UCI3vE7Gg-1cZj1TIED9vZgH5Fzkzk6fx6IDhWERIJkep1pV1F-bK8qNusVaU9QK4ZUS6ujp0Z3rgKHoKc61VhRQrrhVfweBeFmlTZ6o0_4u7wjIUgOKA6SaK61QWoHesj7Kw6PjZpUdHF0PGfIwbcmupVsMtjLTkOSVZGiMfCTLOMEg5RjA4SYNAb3eoPa_kZjX4zIL_-jVeFuZ1cIqpl8cMAmywEvOwj2iCUpab3RSjL_AcHyMi8SD_2s55wLij74WcDkR23g1ZuvE7Q2BOgbf1BMzDznqrYB6unDFOj_06M8yU9Kwx0-7OGfV0bzt9-Wn4pZf2vw_3-2a610_3B6Ne30SFS99_NEHVALo96n1ND16bGX56sJV-2DHTw53hYGu0-84cDt5i0Y9vA_g36u2mey_M0ZvDdPvzOWNlsbJSrtrjO03stscCW3m8RVk9ATO9GYh6o9lqKsqUJ5TnNZXE-zGZ22yxxG81VENQ6XKKETihlsO4p9h5Y7bT7agLhik4-hqOYgpcmoR7DSpaXMmmqosE3Bh_3pjDQYkfZ1Fr4rGI541rMEhxO1mLMbI8_j7sxu31GPznm3EALhANLh5f9ZJxKn_6LxuzG-ub6gqY5BuNq_p5-QnTIK8m
linkProvider ISSN International Centre
openUrl ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.genre=article&rft.atitle=%EC%A0%84%EC%82%AC%EB%B2%95%EC%9C%BC%EB%A1%9C+%EC%A0%9C%EC%A1%B0%ED%95%9C+SOFC%EC%9A%A9+YSZ+%EC%A0%84%ED%95%B4%EC%A7%88+%EC%A0%84%EC%82%AC%EC%A7%80%EC%9D%98+%EC%B9%98%EB%B0%80%ED%99%94+%EB%B0%8F+%EC%A0%84%EA%B8%B0%ED%99%94%ED%95%99%EC%A0%81+%ED%8A%B9%EC%84%B1&rft.jtitle=%EB%8C%80%ED%95%9C%EA%B8%88%EC%86%8D%EC%9E%AC%EB%A3%8C%ED%95%99%ED%9A%8C%EC%A7%80&rft.au=%EC%A1%B0%ED%95%B4%EB%9E%80&rft.au=Hae+Ran+Cho&rft.au=%EC%B5%9C%EB%B3%91%ED%98%84&rft.au=Byung+Hyun+Choi&rft.date=2012-09-20&rft.pub=%EB%8C%80%ED%95%9C%EA%B8%88%EC%86%8D%EC%9E%AC%EB%A3%8C%ED%95%99%ED%9A%8C&rft.issn=1738-8228&rft.volume=50&rft.issue=9&rft.spage=685&rft_id=info:doi/10.3365%2FKJMM.2012.50.9.685&rft.externalDocID=3083681
thumbnail_l http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/lc.gif&issn=1738-8228&client=summon
thumbnail_m http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/mc.gif&issn=1738-8228&client=summon
thumbnail_s http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/sc.gif&issn=1738-8228&client=summon