Part I: Ni-Co alloy foils electrodeposited using ionic liquids

The Ni-Co alloy co-electrodeposit from a sulfate bath including two new ionic liquids 1-methyl-3-(2-oxo-2-((2,4,5 trifluorophenyl) amino) ethyl)-1H-imidazol-3-ium iodide [MOFIM]I and 1-(4-fluorobenzyl)-3-(4-phenoxybutyl) imidazol-3-ium bromide [FPIM]Br as additives was characterized using the SEM, E...

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Main Authors: Omar, Inam M. A., Aziz, Madzlan, Emran, Khadijah M.
Format: Article
Language:English
Published: Elsevier B.V. 2020
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Online Access:http://eprints.utm.my/id/eprint/93072/1/MadzlanAziz2020_PartINiCoAlloyFoilsElectrodeposited.pdf
http://eprints.utm.my/id/eprint/93072/
http://dx.doi.org/10.1016/j.arabjc.2020.09.006
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Institution: Universiti Teknologi Malaysia
Language: English
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spelling my.utm.930722021-11-07T05:59:52Z http://eprints.utm.my/id/eprint/93072/ Part I: Ni-Co alloy foils electrodeposited using ionic liquids Omar, Inam M. A. Aziz, Madzlan Emran, Khadijah M. QD Chemistry The Ni-Co alloy co-electrodeposit from a sulfate bath including two new ionic liquids 1-methyl-3-(2-oxo-2-((2,4,5 trifluorophenyl) amino) ethyl)-1H-imidazol-3-ium iodide [MOFIM]I and 1-(4-fluorobenzyl)-3-(4-phenoxybutyl) imidazol-3-ium bromide [FPIM]Br as additives was characterized using the SEM, EDS, EDS mapping, XRD, AFM and microhardness measurement techniques. The resultant surface morphologies in acidic sulfate baths on a copper substrate demonstrated that both the [MOFIM]I and [FPIM]Br additives served as effective leveling agents. The Ni-Co alloy co-deposit morphology in the [MOFIM]I bath was more enhanced (non-grained coating, Ra of 28 nm and Rt of 35.5 nm) than that in the [FPIM]Br bath (grain size 225 nm, Ra of 51. 1 nm and Rt of 65.7 nm) owing to the molecular structure. The co-deposition of Co and Ni from the acidic baths was of the anomalous type. Moreover, the anomalous behavior of the Ni-Co co-deposition was alleviated after [MOFIM]I and [FPIM]Br were introduced in the bath. To determine the optimal bath conditions, the cathodic current efficiency (CCE%) value was calculated during the Ni-Co alloy co-electrodeposition process under three different compositions and different operating conditions. Under the composition of Ni 70% and Co 30% (Ni70%-Co30% alloy deposit), the CCE% values increased considerably, with maximum values of 99.8% and 97.07% in the baths including [MOFIM]I and [FPIM]Br, respectively. Elsevier B.V. 2020 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/93072/1/MadzlanAziz2020_PartINiCoAlloyFoilsElectrodeposited.pdf Omar, Inam M. A. and Aziz, Madzlan and Emran, Khadijah M. (2020) Part I: Ni-Co alloy foils electrodeposited using ionic liquids. Arabian Journal of Chemistry, 13 (11). pp. 7707-7719. ISSN 1878-5352 http://dx.doi.org/10.1016/j.arabjc.2020.09.006
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic QD Chemistry
spellingShingle QD Chemistry
Omar, Inam M. A.
Aziz, Madzlan
Emran, Khadijah M.
Part I: Ni-Co alloy foils electrodeposited using ionic liquids
description The Ni-Co alloy co-electrodeposit from a sulfate bath including two new ionic liquids 1-methyl-3-(2-oxo-2-((2,4,5 trifluorophenyl) amino) ethyl)-1H-imidazol-3-ium iodide [MOFIM]I and 1-(4-fluorobenzyl)-3-(4-phenoxybutyl) imidazol-3-ium bromide [FPIM]Br as additives was characterized using the SEM, EDS, EDS mapping, XRD, AFM and microhardness measurement techniques. The resultant surface morphologies in acidic sulfate baths on a copper substrate demonstrated that both the [MOFIM]I and [FPIM]Br additives served as effective leveling agents. The Ni-Co alloy co-deposit morphology in the [MOFIM]I bath was more enhanced (non-grained coating, Ra of 28 nm and Rt of 35.5 nm) than that in the [FPIM]Br bath (grain size 225 nm, Ra of 51. 1 nm and Rt of 65.7 nm) owing to the molecular structure. The co-deposition of Co and Ni from the acidic baths was of the anomalous type. Moreover, the anomalous behavior of the Ni-Co co-deposition was alleviated after [MOFIM]I and [FPIM]Br were introduced in the bath. To determine the optimal bath conditions, the cathodic current efficiency (CCE%) value was calculated during the Ni-Co alloy co-electrodeposition process under three different compositions and different operating conditions. Under the composition of Ni 70% and Co 30% (Ni70%-Co30% alloy deposit), the CCE% values increased considerably, with maximum values of 99.8% and 97.07% in the baths including [MOFIM]I and [FPIM]Br, respectively.
format Article
author Omar, Inam M. A.
Aziz, Madzlan
Emran, Khadijah M.
author_facet Omar, Inam M. A.
Aziz, Madzlan
Emran, Khadijah M.
author_sort Omar, Inam M. A.
title Part I: Ni-Co alloy foils electrodeposited using ionic liquids
title_short Part I: Ni-Co alloy foils electrodeposited using ionic liquids
title_full Part I: Ni-Co alloy foils electrodeposited using ionic liquids
title_fullStr Part I: Ni-Co alloy foils electrodeposited using ionic liquids
title_full_unstemmed Part I: Ni-Co alloy foils electrodeposited using ionic liquids
title_sort part i: ni-co alloy foils electrodeposited using ionic liquids
publisher Elsevier B.V.
publishDate 2020
url http://eprints.utm.my/id/eprint/93072/1/MadzlanAziz2020_PartINiCoAlloyFoilsElectrodeposited.pdf
http://eprints.utm.my/id/eprint/93072/
http://dx.doi.org/10.1016/j.arabjc.2020.09.006
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