Increased efficiency of a fuel cell using h-BN electrodes and Teflon polymer electrolyte [-C2F4-]n

Graphene and h-BN have been theoretically simulated for hydrogen storage and oxygen diffusion in a single fuel cell unit. Obviously, the efficiency of the PEM hydrogen fuel cells was significantly related to the amount of H2 concentration, the water activities in catalyst substrates and the polymer...

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Main Authors: A. Chitsazan, M. Monajjemi, H. Aghaei
Format: Article
Language:English
Published: Universidad del Zulia 2020-03-01
Series:Revista de la Universidad del Zulia
Subjects:
Online Access:https://produccioncientificaluz.org/index.php/rluz/article/view/31438
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author A. Chitsazan
M. Monajjemi
H. Aghaei
author_facet A. Chitsazan
M. Monajjemi
H. Aghaei
author_sort A. Chitsazan
collection DOAJ
description Graphene and h-BN have been theoretically simulated for hydrogen storage and oxygen diffusion in a single fuel cell unit. Obviously, the efficiency of the PEM hydrogen fuel cells was significantly related to the amount of H2 concentration, the water activities in catalyst substrates and the polymer of the electrolyte membranes, the temperature and the dependence of such variables in the direction of the fuel and air currents between the anode path and the cathode. The single PEM parameter has been estimated and the results show greater fuel cell efficiency using graphene sheets and h-BN. Maximum efficiency is observed with the stoichiometry of the 5H2, 5O2 and 3 C2F4 molecules during adsorption.
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spelling doaj.art-7a0f02f7b012481cbf341fc44e791a032023-02-14T21:58:39ZengUniversidad del ZuliaRevista de la Universidad del Zulia2665-04282020-03-0111296078https://doi.org/10.46925//rdluz.29.05Increased efficiency of a fuel cell using h-BN electrodes and Teflon polymer electrolyte [-C2F4-]nA. Chitsazan0M. Monajjemi1H. Aghaei2Universidad del ZuliaDepartment of Chemical Engineering, Central Tehran Branch, Islamic Azad UniversityDepartment of Chemistry, Science and research Branch, Islamic Azad UniversityGraphene and h-BN have been theoretically simulated for hydrogen storage and oxygen diffusion in a single fuel cell unit. Obviously, the efficiency of the PEM hydrogen fuel cells was significantly related to the amount of H2 concentration, the water activities in catalyst substrates and the polymer of the electrolyte membranes, the temperature and the dependence of such variables in the direction of the fuel and air currents between the anode path and the cathode. The single PEM parameter has been estimated and the results show greater fuel cell efficiency using graphene sheets and h-BN. Maximum efficiency is observed with the stoichiometry of the 5H2, 5O2 and 3 C2F4 molecules during adsorption.https://produccioncientificaluz.org/index.php/rluz/article/view/31438fuel cellh-bnelectrodesteflon[-c2f4-] n polymerelectrolyte
spellingShingle A. Chitsazan
M. Monajjemi
H. Aghaei
Increased efficiency of a fuel cell using h-BN electrodes and Teflon polymer electrolyte [-C2F4-]n
Revista de la Universidad del Zulia
fuel cell
h-bn
electrodes
teflon
[-c2f4-] n polymer
electrolyte
title Increased efficiency of a fuel cell using h-BN electrodes and Teflon polymer electrolyte [-C2F4-]n
title_full Increased efficiency of a fuel cell using h-BN electrodes and Teflon polymer electrolyte [-C2F4-]n
title_fullStr Increased efficiency of a fuel cell using h-BN electrodes and Teflon polymer electrolyte [-C2F4-]n
title_full_unstemmed Increased efficiency of a fuel cell using h-BN electrodes and Teflon polymer electrolyte [-C2F4-]n
title_short Increased efficiency of a fuel cell using h-BN electrodes and Teflon polymer electrolyte [-C2F4-]n
title_sort increased efficiency of a fuel cell using h bn electrodes and teflon polymer electrolyte c2f4 n
topic fuel cell
h-bn
electrodes
teflon
[-c2f4-] n polymer
electrolyte
url https://produccioncientificaluz.org/index.php/rluz/article/view/31438
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AT mmonajjemi increasedefficiencyofafuelcellusinghbnelectrodesandteflonpolymerelectrolytec2f4n
AT haghaei increasedefficiencyofafuelcellusinghbnelectrodesandteflonpolymerelectrolytec2f4n