Please use this identifier to cite or link to this item: https://hdl.handle.net/10356/140771
Title: A high-performance SDC-infiltrated nanoporous silver cathode with superior thermal stability for low temperature solid oxide fuel cells
Authors: Lee, Tsung-Han
Fan, Liangdong
Yu, Chen-Chiang
Wiria, Florencia Edith
Su, Pei-Chen
Keywords: Engineering::Mechanical engineering
Issue Date: 2018
Source: Lee, T.-H., Fan, L., Yu, C.-C., Wiria, F. E., & Su, P.-C. (2018). A high-performance SDC-infiltrated nanoporous silver cathode with superior thermal stability for low temperature solid oxide fuel cells. Journal of Materials Chemistry A, 6(17), 7357-7363. doi:10.1039/c8ta01104d
Journal: Journal of Materials Chemistry A
Abstract: Superior thermal stability of a nanoporous silver thin film cathode is enabled by covering the silver nanoparticles with a thin layer of samarium-doped ceria (SDC). A simple solution infiltration process followed by post heat treatment at 500 °C is applied to coat a thin SDC layer over inkjet-printed silver nanoparticle thin films to physically confine the silver nanoparticles to prevent thermal agglomeration. The electrochemical performance of the SDC-infiltrated silver cathode also surpasses that of both a non-infiltrated silver cathode and a typical sputtered nanoporous platinum cathode. A 60 hour fuel cell current stability test using the SDC-infiltrated silver cathode shows only 12.4% current degradation, which is significantly lower than 73.6% degradation from the fuel cell using a non-infiltrated silver cathode.
URI: https://hdl.handle.net/10356/140771
ISSN: 2050-7488
DOI: 10.1039/c8ta01104d
Schools: School of Mechanical and Aerospace Engineering 
Rights: © 2018 The Royal Society of Chemistry. All rights reserved.
Fulltext Permission: none
Fulltext Availability: No Fulltext
Appears in Collections:MAE Journal Articles

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