The Effect of Deposition Potential on the Electrodeposition of Platinum Nanoparticles for Ethanol Electrooxidation

Platinum (Pt) nanoparticles were successfully prepared using square wave pulse deposition technique by varying the upper potential. The X-ray energy dispersive spectrum pattern confirmed the formation of Pt nanoparticles on the fluorine-doped tin oxide coated glass substrate. The results of scanning...

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Main Authors: Amelia Sabella, Reyhan Syifa, Nandita Annisa Dwiyana
Format: Article
Language:English
Published: The Center for Science Innovation 2022-11-01
Series:Chemistry and Materials
Subjects:
Online Access:https://piscience.org/index.php/cma/article/view/46
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author Amelia Sabella
Reyhan Syifa
Nandita Annisa Dwiyana
author_facet Amelia Sabella
Reyhan Syifa
Nandita Annisa Dwiyana
author_sort Amelia Sabella
collection DOAJ
description Platinum (Pt) nanoparticles were successfully prepared using square wave pulse deposition technique by varying the upper potential. The X-ray energy dispersive spectrum pattern confirmed the formation of Pt nanoparticles on the fluorine-doped tin oxide coated glass substrate. The results of scanning electron microscopy showed that the potential of 0.60 V was able to produced a large number of Pt particles with a unique morphology. The ethanol electrooxidation test conducted using cyclic voltammetry showed that Pt0.60v has the lowest charge transfer resistance value showing high catalytic activity which could be associated to the increase of particle number and its active sites that activated the redox reactions in the system.
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spelling doaj.art-2429ac26182447b1bf8fb9d5308feb7d2023-07-19T02:26:46ZengThe Center for Science InnovationChemistry and Materials2828-271X2828-23102022-11-0113889210.56425/cma.v1i3.4646The Effect of Deposition Potential on the Electrodeposition of Platinum Nanoparticles for Ethanol ElectrooxidationAmelia Sabella0Reyhan Syifa1Nandita Annisa Dwiyana2Department of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Negeri Jakarta, Indonesia Department of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Negeri Jakarta, Indonesia English Literature, Faculty of English Department, Universitas Pamulang, IndonesiaPlatinum (Pt) nanoparticles were successfully prepared using square wave pulse deposition technique by varying the upper potential. The X-ray energy dispersive spectrum pattern confirmed the formation of Pt nanoparticles on the fluorine-doped tin oxide coated glass substrate. The results of scanning electron microscopy showed that the potential of 0.60 V was able to produced a large number of Pt particles with a unique morphology. The ethanol electrooxidation test conducted using cyclic voltammetry showed that Pt0.60v has the lowest charge transfer resistance value showing high catalytic activity which could be associated to the increase of particle number and its active sites that activated the redox reactions in the system.https://piscience.org/index.php/cma/article/view/46ptelectrodepositionethanol electrooxidation
spellingShingle Amelia Sabella
Reyhan Syifa
Nandita Annisa Dwiyana
The Effect of Deposition Potential on the Electrodeposition of Platinum Nanoparticles for Ethanol Electrooxidation
Chemistry and Materials
pt
electrodeposition
ethanol electrooxidation
title The Effect of Deposition Potential on the Electrodeposition of Platinum Nanoparticles for Ethanol Electrooxidation
title_full The Effect of Deposition Potential on the Electrodeposition of Platinum Nanoparticles for Ethanol Electrooxidation
title_fullStr The Effect of Deposition Potential on the Electrodeposition of Platinum Nanoparticles for Ethanol Electrooxidation
title_full_unstemmed The Effect of Deposition Potential on the Electrodeposition of Platinum Nanoparticles for Ethanol Electrooxidation
title_short The Effect of Deposition Potential on the Electrodeposition of Platinum Nanoparticles for Ethanol Electrooxidation
title_sort effect of deposition potential on the electrodeposition of platinum nanoparticles for ethanol electrooxidation
topic pt
electrodeposition
ethanol electrooxidation
url https://piscience.org/index.php/cma/article/view/46
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