Precursor solution additives improve desiccated La0.6Sr0.4Co0.8Fe0.2O3–x infiltrated solid oxide fuel cell cathode performance
Тип публикации: Journal Article
Дата публикации: 2016-01-01
scimago Q1
wos Q1
БС1
SJR: 1.784
CiteScore: 14.9
Impact factor: 7.9
ISSN: 03787753, 18732755
Physical and Theoretical Chemistry
Electrical and Electronic Engineering
Energy Engineering and Power Technology
Renewable Energy, Sustainability and the Environment
Краткое описание
Here, the addition of the surfactant Triton X-100 or the chelating agent citric acid to Solid Oxide Fuel Cell (SOFC) La0.6Sr0.4Co0.8Fe0.2O3–x (LSCF) precursor nitrate solutions is shown via scanning electron microscopy (SEM) and X-ray diffraction (XRD) to reduce average infiltrate nano-particle size and improve infiltrate phase purity. In addition, the desiccation of LSCF precursor solutions containing the aforementioned organic solution additives further reduces the average LSCF infiltrate nano-particle size and improves the low-temperature infiltrate phase purity. In particular, CaCl2-desiccation reduces the average size of Triton X-100 derived (TXD) LSCF particles fired at 700 °C from 48 to 22 nm, and reduces the average size of citric acid derived LSCF particles fired at 700 °C from 50 to 41 nm. Modeling and electrochemical impedance spectroscopy (EIS) tests indicate that particle size reductions alone are responsible for desiccation-induced cathode performance improvements such as CaCl2-desiccated TXD La0.6Sr0.4Co0.8Fe0.2O3-x – Ce0.9Gd0.1O1.95 (LSCF-GDC) cathodes reaching a polarization resistance of 0.17 Ωcm2 at 540 °C, compared to 600 °C for undesiccated TXD LSCF-GDC cathodes. This excellent low-temperature performance, combined with a low open-circuit 540 °C degradation rate, suggests that the desiccation of organic-additive-containing infiltrate precursor solutions may be useful for the development of durable, high-power, low-temperature SOFCs.
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Burye T. E., Nicholas J. D. Precursor solution additives improve desiccated La0.6Sr0.4Co0.8Fe0.2O3–x infiltrated solid oxide fuel cell cathode performance // Journal of Power Sources. 2016. Vol. 301. pp. 287-298.
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Burye T. E., Nicholas J. D. Precursor solution additives improve desiccated La0.6Sr0.4Co0.8Fe0.2O3–x infiltrated solid oxide fuel cell cathode performance // Journal of Power Sources. 2016. Vol. 301. pp. 287-298.
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TY - JOUR
DO - 10.1016/j.jpowsour.2015.10.012
UR - https://doi.org/10.1016/j.jpowsour.2015.10.012
TI - Precursor solution additives improve desiccated La0.6Sr0.4Co0.8Fe0.2O3–x infiltrated solid oxide fuel cell cathode performance
T2 - Journal of Power Sources
AU - Burye, Theodore E.
AU - Nicholas, Jason D.
PY - 2016
DA - 2016/01/01
PB - Elsevier
SP - 287-298
VL - 301
SN - 0378-7753
SN - 1873-2755
ER -
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@article{2016_Burye,
author = {Theodore E. Burye and Jason D. Nicholas},
title = {Precursor solution additives improve desiccated La0.6Sr0.4Co0.8Fe0.2O3–x infiltrated solid oxide fuel cell cathode performance},
journal = {Journal of Power Sources},
year = {2016},
volume = {301},
publisher = {Elsevier},
month = {jan},
url = {https://doi.org/10.1016/j.jpowsour.2015.10.012},
pages = {287--298},
doi = {10.1016/j.jpowsour.2015.10.012}
}