volume 17 issue 6 pages 9305-9314

Enhancing the Performance of Metal-Supported Solid Oxide Fuel Cells via Infiltration with an Aqueous Solution of Metal Nitrate Salts

Aroosa Javed 1, 2
Daniel Sikstrom 1, 2
Yoshihisa Furuya 3
Nilesh V. Dale 3
A. Mohammed Hussain 3
1
 
Department of Chemistry, Calgary, Canada
3
 
Nissan Technical Center North America (NTCNA), Farmington Hills, United States
4
 
School of Chemistry, St Andrews, U.K.
Publication typeJournal Article
Publication date2025-02-03
scimago Q1
wos Q1
SJR1.921
CiteScore14.5
Impact factor8.2
ISSN19448244, 19448252
Abstract
The infiltration technique is a cost-effective method to develop nanostructured electrodes that can accelerate sluggish oxygen reduction reaction (ORR) and enhance the electrochemical performance of solid oxide fuel cells (SOFCs) at intermediate temperatures (600-800 °C). For metal-supported SOFCs, identifying a highly efficient ORR catalyst is an ongoing challenge due to lower temperature operation. In this work, nanostructured praseodymium oxide (PrOx) and multiphase heterostructures containing perovskites with the nominal composition of Nd0.6Sr0.4CoO3-δ (NSC), SrCO3, and CoO have been developed via infiltration into the symmetric metal-supported backbone as binary layer composite, and their electrochemical performance has been investigated. The composite demonstrates enhanced electrochemical performance at various temperatures achieving the lowest polarization resistance (Rp) of 0.05 Ω cm2 at 700 °C compared to multiphase NSC alone (0.1 Ω cm2) under similar conditions. A distribution function of relaxation time (DFRT) analysis using impedance spectroscopy genetic program (ISGP) was carried out to study different electrochemical processes. PrOx significantly improves the processes involved in the ORR. The full cell performance of the composite electrode achieves a peak power density (PPD) of 329 mW·cm-2 at 700 °C in 3%H2O/H2 as fuel.
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Javed A. et al. Enhancing the Performance of Metal-Supported Solid Oxide Fuel Cells via Infiltration with an Aqueous Solution of Metal Nitrate Salts // ACS applied materials & interfaces. 2025. Vol. 17. No. 6. pp. 9305-9314.
GOST all authors (up to 50) Copy
Javed A., Sikstrom D., Furuya Y., Dale N. V., Hussain A. M., Thangadurai V. Enhancing the Performance of Metal-Supported Solid Oxide Fuel Cells via Infiltration with an Aqueous Solution of Metal Nitrate Salts // ACS applied materials & interfaces. 2025. Vol. 17. No. 6. pp. 9305-9314.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1021/acsami.4c19043
UR - https://pubs.acs.org/doi/10.1021/acsami.4c19043
TI - Enhancing the Performance of Metal-Supported Solid Oxide Fuel Cells via Infiltration with an Aqueous Solution of Metal Nitrate Salts
T2 - ACS applied materials & interfaces
AU - Javed, Aroosa
AU - Sikstrom, Daniel
AU - Furuya, Yoshihisa
AU - Dale, Nilesh V.
AU - Hussain, A. Mohammed
AU - Thangadurai, Venkataraman
PY - 2025
DA - 2025/02/03
PB - American Chemical Society (ACS)
SP - 9305-9314
IS - 6
VL - 17
SN - 1944-8244
SN - 1944-8252
ER -
BibTex |
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BibTex (up to 50 authors) Copy
@article{2025_Javed,
author = {Aroosa Javed and Daniel Sikstrom and Yoshihisa Furuya and Nilesh V. Dale and A. Mohammed Hussain and Venkataraman Thangadurai},
title = {Enhancing the Performance of Metal-Supported Solid Oxide Fuel Cells via Infiltration with an Aqueous Solution of Metal Nitrate Salts},
journal = {ACS applied materials & interfaces},
year = {2025},
volume = {17},
publisher = {American Chemical Society (ACS)},
month = {feb},
url = {https://pubs.acs.org/doi/10.1021/acsami.4c19043},
number = {6},
pages = {9305--9314},
doi = {10.1021/acsami.4c19043}
}
MLA
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Javed, Aroosa, et al. “Enhancing the Performance of Metal-Supported Solid Oxide Fuel Cells via Infiltration with an Aqueous Solution of Metal Nitrate Salts.” ACS applied materials & interfaces, vol. 17, no. 6, Feb. 2025, pp. 9305-9314. https://pubs.acs.org/doi/10.1021/acsami.4c19043.