Ag decorated (Ba,Sr)(Co,Fe)O3 cathodes for solid oxide fuel cells prepared by electroless silver deposition

We reported nano-structured Ag modified Ba0.5Sr0.5Co0.6Fe0.4O3-d (Ag@BSCF) cathode forsolid oxide fuel cells (SOFCs) that is prepared by vacuum assisted electroless deposition technique. We show that the concentration of Ag can be easily adjusted by tuning the deposition time without altering the pe...

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Main Authors: Su, R., Lu, Z., Jiang, San Ping, Shen, Y., Su, W., Chen, Kongfa
Format: Journal Article
Published: Elsevier Ltd 2013
Subjects:
Online Access:http://hdl.handle.net/20.500.11937/13566
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author Su, R.
Lu, Z.
Jiang, San Ping
Shen, Y.
Su, W.
Chen, Kongfa
author_facet Su, R.
Lu, Z.
Jiang, San Ping
Shen, Y.
Su, W.
Chen, Kongfa
author_sort Su, R.
building Curtin Institutional Repository
collection Online Access
description We reported nano-structured Ag modified Ba0.5Sr0.5Co0.6Fe0.4O3-d (Ag@BSCF) cathode forsolid oxide fuel cells (SOFCs) that is prepared by vacuum assisted electroless deposition technique. We show that the concentration of Ag can be easily adjusted by tuning the deposition time without altering the perovskite structure of the pristine BSCF. The effect of Ag loading on the electrochemical performance of the material has been systematically studied by varying the Ag loading and the working condition (oxygen partial pressure). An optimized electrode performance is observed with an Ag loading of ~ 2 wt%. We demonstrate that the presence of Ag significantly reduces the electrode ohmic resistance and enhances the catalytic O2 reduction performance of the BSCF cathode.
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T07:04:07Z
publishDate 2013
publisher Elsevier Ltd
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spelling curtin-20.500.11937-135662017-02-28T01:34:35Z Ag decorated (Ba,Sr)(Co,Fe)O3 cathodes for solid oxide fuel cells prepared by electroless silver deposition Su, R. Lu, Z. Jiang, San Ping Shen, Y. Su, W. Chen, Kongfa Silver nanoparticles Solid oxide fuel cells BSCF cathode Electroless deposition We reported nano-structured Ag modified Ba0.5Sr0.5Co0.6Fe0.4O3-d (Ag@BSCF) cathode forsolid oxide fuel cells (SOFCs) that is prepared by vacuum assisted electroless deposition technique. We show that the concentration of Ag can be easily adjusted by tuning the deposition time without altering the perovskite structure of the pristine BSCF. The effect of Ag loading on the electrochemical performance of the material has been systematically studied by varying the Ag loading and the working condition (oxygen partial pressure). An optimized electrode performance is observed with an Ag loading of ~ 2 wt%. We demonstrate that the presence of Ag significantly reduces the electrode ohmic resistance and enhances the catalytic O2 reduction performance of the BSCF cathode. 2013 Journal Article http://hdl.handle.net/20.500.11937/13566 Elsevier Ltd restricted
spellingShingle Silver nanoparticles
Solid oxide fuel cells
BSCF cathode
Electroless deposition
Su, R.
Lu, Z.
Jiang, San Ping
Shen, Y.
Su, W.
Chen, Kongfa
Ag decorated (Ba,Sr)(Co,Fe)O3 cathodes for solid oxide fuel cells prepared by electroless silver deposition
title Ag decorated (Ba,Sr)(Co,Fe)O3 cathodes for solid oxide fuel cells prepared by electroless silver deposition
title_full Ag decorated (Ba,Sr)(Co,Fe)O3 cathodes for solid oxide fuel cells prepared by electroless silver deposition
title_fullStr Ag decorated (Ba,Sr)(Co,Fe)O3 cathodes for solid oxide fuel cells prepared by electroless silver deposition
title_full_unstemmed Ag decorated (Ba,Sr)(Co,Fe)O3 cathodes for solid oxide fuel cells prepared by electroless silver deposition
title_short Ag decorated (Ba,Sr)(Co,Fe)O3 cathodes for solid oxide fuel cells prepared by electroless silver deposition
title_sort ag decorated (ba,sr)(co,fe)o3 cathodes for solid oxide fuel cells prepared by electroless silver deposition
topic Silver nanoparticles
Solid oxide fuel cells
BSCF cathode
Electroless deposition
url http://hdl.handle.net/20.500.11937/13566