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Preparation of Pt-Co nanoparticles by galvanostatic pulse electrochemical codeposition on in situ electrochemical reduced graphene nanoplates based carbon paper electrode for oxygen reduction reaction in proton exchange membrane fuel cell

نویسنده:
مریم یلداگرد
,
ناصر ثقه الاسلامی
,
Mohsen Jahanshahi
,
Maryam Yaldagard
,
Nasser Saghatoleslami
سال
: 2014
چکیده: Nanocomposite films of Pt-Co nanoparticles deposited on graphene nanoplate based gas diffusion layer electrode are fabricated via an electrochemical route involving a series of electrochemical process. Pt-Co nanoparticles of 11.37 nm in average size are prepared by galvanostatic codeposition in 0.5 M NaCl at PH of 2.5 at 300 mA cm2 on the surface of in situ reduced graphene nanoplates on carbon paper. The topographical features, structure, morphology and composition of the prepared film samples are char- acterized by Atomic Force microscopy, Raman Spectroscopy, FTIR analysis, X-ray Diffraction, FESEM and EDS. At the same time, the catalytic activities of prepared electrodes for the oxygen reduction reaction are evaluated through cyclic voltammetry, linear sweep voltammetry and chronoamperometry and elec- trochemical impedance spectroscopy measurements. Raman spectroscopy measurements confirmed the graphitic structure of the producedgraphene nanoplates. The nanoparticles in the film were observed to be uniform spherical objects and well distributed. Catalytic properties of Pt-Co/GNP/GDL electrode were compared with Pt/C/GDL using half cell polarization measurements based on both mass activity and spe- cific activity. The as prepared Pt-Co/GNP/GDL electrode exhibits high catalytic activity for the ORR, which may be attributed to structural changes caused by alloying and the high specific surface area of graphene nanoplates catalyst support. The mass activity peak current is found to be as high as 728.25 mA mgPt -1
یو آر آی: https://libsearch.um.ac.ir:443/fum/handle/fum/3350435
کلیدواژه(گان): Pt-Co nanoparticles,Oxygen reduction reaction,Galvanostatic,Graphene nanoplates,Proton exchange membrane fuel cell
کالکشن :
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    Preparation of Pt-Co nanoparticles by galvanostatic pulse electrochemical codeposition on in situ electrochemical reduced graphene nanoplates based carbon paper electrode for oxygen reduction reaction in proton exchange membrane fuel cell

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contributor authorمریم یلداگردen
contributor authorناصر ثقه الاسلامیen
contributor authorMohsen Jahanshahien
contributor authorMaryam Yaldagardfa
contributor authorNasser Saghatoleslamifa
date accessioned2020-06-06T13:19:48Z
date available2020-06-06T13:19:48Z
date issued2014
identifier urihttps://libsearch.um.ac.ir:443/fum/handle/fum/3350435
description abstractNanocomposite films of Pt-Co nanoparticles deposited on graphene nanoplate based gas diffusion layer electrode are fabricated via an electrochemical route involving a series of electrochemical process. Pt-Co nanoparticles of 11.37 nm in average size are prepared by galvanostatic codeposition in 0.5 M NaCl at PH of 2.5 at 300 mA cm2 on the surface of in situ reduced graphene nanoplates on carbon paper. The topographical features, structure, morphology and composition of the prepared film samples are char- acterized by Atomic Force microscopy, Raman Spectroscopy, FTIR analysis, X-ray Diffraction, FESEM and EDS. At the same time, the catalytic activities of prepared electrodes for the oxygen reduction reaction are evaluated through cyclic voltammetry, linear sweep voltammetry and chronoamperometry and elec- trochemical impedance spectroscopy measurements. Raman spectroscopy measurements confirmed the graphitic structure of the producedgraphene nanoplates. The nanoparticles in the film were observed to be uniform spherical objects and well distributed. Catalytic properties of Pt-Co/GNP/GDL electrode were compared with Pt/C/GDL using half cell polarization measurements based on both mass activity and spe- cific activity. The as prepared Pt-Co/GNP/GDL electrode exhibits high catalytic activity for the ORR, which may be attributed to structural changes caused by alloying and the high specific surface area of graphene nanoplates catalyst support. The mass activity peak current is found to be as high as 728.25 mA mgPt -1en
languageEnglish
titlePreparation of Pt-Co nanoparticles by galvanostatic pulse electrochemical codeposition on in situ electrochemical reduced graphene nanoplates based carbon paper electrode for oxygen reduction reaction in proton exchange membrane fuel cellen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsPt-Co nanoparticlesen
subject keywordsOxygen reduction reactionen
subject keywordsGalvanostaticen
subject keywordsGraphene nanoplatesen
subject keywordsProton exchange membrane fuel cellen
journal titleApplied Surface Sciencefa
pages222-234
journal volume315
journal issue1
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1042697.html
identifier articleid1042697
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