http://scholars.ntou.edu.tw/handle/123456789/13192
Title: | Novel lanthanum and cerium coatings on (Ba, Sr)-ferrate cathodes for intermediate-temperature solid oxide fuel cells | Authors: | Wang, Yao-Ming Chang, Chia-Ming Shih, Jing-Shiang Chang, Horng-Yi |
Keywords: | IONIC-ELECTRONIC CONDUCTIVITY;OXYGEN STOICHIOMETRY;ELECTROCHEMICAL PROPERTIES;PEROVSKITE OXIDE;STABILITY;PERMEABILITY;REDUCTION;MECHANISM;SYSTEM | Issue Date: | Nov-2016 | Publisher: | ELSEVIER SCI LTD | Journal Volume: | 36 | Journal Issue: | 14 | Start page/Pages: | 3433-3440 | Source: | J EUR CERAM SOC | Abstract: | Ba0.5Sr0.5FeO3-delta (BSF) and Nb-doped BSF (BSNF) particles were coated with single or combined La and Ce (LC) components by a novel semi-organic solution method. Ce-coated BSF (BSF-x Ce) presented a cubic structure after heat treatment. Sintering BSF-x Ce and BSNF-x LC at 1150 degrees C for 6 h reduced the grain sizes. Among the coated samples, 3.75 mol% LC-coated BSNF (BSNF-3.75 LC) presented the most significant conductivity increase. AC impedance data indicate that the LC coating decreased the ohmic and diffusion resistances in half-cells with a BSNF-x LC cathode and (La0.75Sr0.2Ba0.05)(0.175)Ce0.825O1.891 (LSBC) electrolyte. The power density of the BSNF-3.75 LC/LSBC/Pt half-cell at 650 degrees C far exceeds that of BSF/LSBC/Pt at 700 degrees C. The Ce coating on BSF and LC coating on BSNF provided lattice stability and better BSF cathode-LSBC electrolyte adhesion. LC coating enhanced the cell performance by increasing the triple-phase boundaries (TPBs) in the solid oxide fuel cell (SOFC). (C) 2016 Elsevier Ltd. All rights reserved. |
URI: | http://scholars.ntou.edu.tw/handle/123456789/13192 | ISSN: | 0955-2219 | DOI: | 10.1016/j.jeurceramsoc.2016.05.018 |
Appears in Collections: | 輪機工程學系 07 AFFORDABLE & CLEAN ENERGY |
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