The best composition of an Y-doped BaZrO3 electrolyte: selection criteria from transport properties, microstructure, and phase behavior

被引:124
作者
Han, Donglin [1 ]
Uda, Tetsuya [1 ]
机构
[1] Kyoto Univ, Dept Mat Sci & Engn, Sakyo Ku, Yoshida Honmachi, Kyoto 6068501, Japan
关键词
CERAMIC FUEL-CELLS; BARIUM ZIRCONATE; PROTON CONDUCTIVITY; HIGH-PERFORMANCE; DEPOSITION; OXIDES;
D O I
10.1039/c8ta06280c
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Y-doped BaZrO3 shows high protonic conductivity at intermediate temperature and has promising prospects to be applied as an electrolyte in electrochemical devices, including fuel cells and electrolysis cells. In this work, with the aim to determine the optimal composition of BZY for such electrochemical application, a thorough investigation on BaZrO3 doped with 10-25 mol% Y with an interval of 1 mol% was performed, and the microstructure, phase behavior and transport properties were studied. The results revealed that after sintering at 1600 degrees C for 24 h, a bimodal microstructure was confirmed for BaZr1-xYxO3-delta (x = 0.10-0.15), whereas BaZr1-xYxO3-delta (x = 0.16-0.25) shows a quite uniform grain size. Further investigation on BZY10, BZY15 and BZY20 by sintering for different time periods shows that a uniform grain size of around 2 and 6 mm was obtained for BZY15 and BZY20, respectively, but BZY10 still has a bimodal microstructure, even after sintering at 1600 degrees C for 200 h. Then through a systematic evaluation of the transport properties, we found that when the Y content is above 15 mol%, a total conductivity of over 0.01 S cm(-1) is achieved even at 500 degrees C. And the transport number of ionic conduction in wet oxygen increases with the Y content increasing from 10 to 20 mol%, but does not further increase when the Y content is higher than 20 mol%. Notably, both Ba-deficiency and Ba-excess decrease the transport numbers of ionic conduction in wet oxygen. In conclusion, a Y content of around 20 mol% with strictly controlled Ba stoichiometry seems to be the optimal composition.
引用
收藏
页码:18571 / 18582
页数:12
相关论文
共 44 条
[1]   Structural origins of the differing grain conductivity values in BaZr0.9Y0.1O2.95 and indication of novel approach to counter defect association [J].
Azad, Abul K. ;
Savaniu, Cristian ;
Tao, Shanwen ;
Duval, Sophie ;
Holtappels, Peter ;
Ibberson, Richard M. ;
Irvine, John T. S. .
JOURNAL OF MATERIALS CHEMISTRY, 2008, 18 (29) :3414-3418
[2]  
Babilo P, 2007, J MATER RES, V22, P1322, DOI 10.1557/JMR.2007.0163
[3]   Novel modification of anode microstructure for proton-conducting solid oxide fuel cells with BaZr0.8Y0.2O3-δ electrolytes [J].
Bae, Hongyeul ;
Choi, Gyeong Man .
JOURNAL OF POWER SOURCES, 2015, 285 :431-438
[4]   Low-temperature fabrication of protonic ceramic fuel cells with BaZr0.8Y0.2O3-δ electrolytes coated by aerosol deposition method [J].
Bae, Hongyeul ;
Choi, Jongjin ;
Kim, Kun Joong ;
Park, Dongsoo ;
Choi, Gyeong Man .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2015, 40 (06) :2775-2784
[5]   Demonstrating the potential of yttrium-doped barium zirconate electrolyte for high-performance fuel cells [J].
Bae, Kiho ;
Jang, Dong Young ;
Choi, Hyung Jong ;
Kim, Donghwan ;
Hong, Jongsup ;
Kim, Byung-Kook ;
Lee, Jong-Ho ;
Son, Ji-Won ;
Shim, Joon Hyung .
NATURE COMMUNICATIONS, 2017, 8
[6]   Proton-conducting solid oxide fuel cell (SOFC) with Y-doped BaZrO3 electrolyte [J].
Bi, Lei ;
Da'as, Eman Husni ;
Shafi, Shahid P. .
ELECTROCHEMISTRY COMMUNICATIONS, 2017, 80 :20-23
[7]   Y-doped BaZrO3 as a chemically stable electrolyte for proton-conducting solid oxide electrolysis cells (SOECs) [J].
Bi, Lei ;
Shafi, Shahid P. ;
Traversa, Enrico .
JOURNAL OF MATERIALS CHEMISTRY A, 2015, 3 (11) :5815-5819
[8]   Synthesis strategies for improving the performance of doped-BaZrO3 materials in solid oxide fuel cell applications [J].
Bi, Lei ;
Traversa, Enrico .
JOURNAL OF MATERIALS RESEARCH, 2014, 29 (01) :1-15
[9]   Sinteractive anodic powders improve densification and electrochemical properties of BaZr0.8Y0.2O3-δ electrolyte films for anode-supported solid oxide fuel cells [J].
Bi, Lei ;
Fabbri, Emiliana ;
Sun, Ziqi ;
Traversa, Enrico .
ENERGY & ENVIRONMENTAL SCIENCE, 2011, 4 (04) :1352-1357
[10]  
Bohn HG, 2000, J AM CERAM SOC, V83, P768