The Role of Reaction Parameter on Leaching of SiO2 Doped Nafion Membrane for Use in High Temperature PEM Fuel Cells

The Nafion 117 membrane was doped with SiO2 particles by sol-gel reaction. The reaction conditions to minimize leaching were investigated by using full factorial design of experiment. The results from the full factorial analysis indicated that the lowest amount of leaching takes place at 60oC withou...

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Main Authors: M. Amjadi, S. Rowshanzamir, M.H. Eikani
Format: Article
Language:fas
Published: Iran Polymer and Petrochemical Institute 2013-01-01
Series:علوم و تکنولوژی پلیمر
Subjects:
Online Access:http://jips.ippi.ac.ir/article_651_2ca8aae73bd861facc9c4145d051144a.pdf
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spelling doaj-4d1da2385cec49bc9ca2ba5701df6a112020-11-24T20:50:15ZfasIran Polymer and Petrochemical Instituteعلوم و تکنولوژی پلیمر1016-32552008-08832013-01-0123211112010.22063/jipst.2013.651651The Role of Reaction Parameter on Leaching of SiO2 Doped Nafion Membrane for Use in High Temperature PEM Fuel CellsM. AmjadiS. RowshanzamirM.H. EikaniThe Nafion 117 membrane was doped with SiO2 particles by sol-gel reaction. The reaction conditions to minimize leaching were investigated by using full factorial design of experiment. The results from the full factorial analysis indicated that the lowest amount of leaching takes place at 60oC without addition of acid and swelling of membranes prior to the reaction. The membranes, prepared at optimum reaction conditions, were characterized using differential scanning calorimetry (DSC), and for water uptake, ion exchange capacity, and cell performance. The water uptake of Nafion/SiO2 membrane with 7% of doping level increased up to 44% that is 26% higher than that of the pure Nafion membrane. The same trend was obtained for proton exchange capacity. DSC Measurements for modified samples showed an increase in Tg as compared to unmodified sample. Fuel cell test was carried out at 70 oC and 110 oC. At 110 oC the modified membrane with 7 wt% of SiO2 showed improved fuel cell performance compared to the pure Nafion. For instance, at 200 mA/cm2 the voltage gained by composite membrane was twice higher than that of the pure Nafion.http://jips.ippi.ac.ir/article_651_2ca8aae73bd861facc9c4145d051144a.pdfsol-gelwater uptakehigh temperature PEM fuel cellSiO2 doped Nafion membraneleaching
collection DOAJ
language fas
format Article
sources DOAJ
author M. Amjadi
S. Rowshanzamir
M.H. Eikani
spellingShingle M. Amjadi
S. Rowshanzamir
M.H. Eikani
The Role of Reaction Parameter on Leaching of SiO2 Doped Nafion Membrane for Use in High Temperature PEM Fuel Cells
علوم و تکنولوژی پلیمر
sol-gel
water uptake
high temperature PEM fuel cell
SiO2 doped Nafion membrane
leaching
author_facet M. Amjadi
S. Rowshanzamir
M.H. Eikani
author_sort M. Amjadi
title The Role of Reaction Parameter on Leaching of SiO2 Doped Nafion Membrane for Use in High Temperature PEM Fuel Cells
title_short The Role of Reaction Parameter on Leaching of SiO2 Doped Nafion Membrane for Use in High Temperature PEM Fuel Cells
title_full The Role of Reaction Parameter on Leaching of SiO2 Doped Nafion Membrane for Use in High Temperature PEM Fuel Cells
title_fullStr The Role of Reaction Parameter on Leaching of SiO2 Doped Nafion Membrane for Use in High Temperature PEM Fuel Cells
title_full_unstemmed The Role of Reaction Parameter on Leaching of SiO2 Doped Nafion Membrane for Use in High Temperature PEM Fuel Cells
title_sort role of reaction parameter on leaching of sio2 doped nafion membrane for use in high temperature pem fuel cells
publisher Iran Polymer and Petrochemical Institute
series علوم و تکنولوژی پلیمر
issn 1016-3255
2008-0883
publishDate 2013-01-01
description The Nafion 117 membrane was doped with SiO2 particles by sol-gel reaction. The reaction conditions to minimize leaching were investigated by using full factorial design of experiment. The results from the full factorial analysis indicated that the lowest amount of leaching takes place at 60oC without addition of acid and swelling of membranes prior to the reaction. The membranes, prepared at optimum reaction conditions, were characterized using differential scanning calorimetry (DSC), and for water uptake, ion exchange capacity, and cell performance. The water uptake of Nafion/SiO2 membrane with 7% of doping level increased up to 44% that is 26% higher than that of the pure Nafion membrane. The same trend was obtained for proton exchange capacity. DSC Measurements for modified samples showed an increase in Tg as compared to unmodified sample. Fuel cell test was carried out at 70 oC and 110 oC. At 110 oC the modified membrane with 7 wt% of SiO2 showed improved fuel cell performance compared to the pure Nafion. For instance, at 200 mA/cm2 the voltage gained by composite membrane was twice higher than that of the pure Nafion.
topic sol-gel
water uptake
high temperature PEM fuel cell
SiO2 doped Nafion membrane
leaching
url http://jips.ippi.ac.ir/article_651_2ca8aae73bd861facc9c4145d051144a.pdf
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