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Ag(x)Cu(y)Ni(z) Trimetallic Alloy Catalysts for the Electrocatalytic Reduction of Benzyl Bromide in the Presence of Carbon Dioxide

[Image: see text] Different compositions of trimetallic alloy containing silver, copper, and nickel (Ag(x)Cu(y)Ni(z)) were electrodecorated in a protic ionic liquid medium on glassy carbon electrodes in order to investigate the suitability of the materials as catalysts for electrochemical reduction...

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Autores principales: Rajagopal, Venkatachalam, Manivel, Perumal, Nesakumar, Noel, Kathiresan, Murugavel, Velayutham, David, Suryanarayanan, Vembu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2018
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6643392/
https://www.ncbi.nlm.nih.gov/pubmed/31458333
http://dx.doi.org/10.1021/acsomega.8b02715
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author Rajagopal, Venkatachalam
Manivel, Perumal
Nesakumar, Noel
Kathiresan, Murugavel
Velayutham, David
Suryanarayanan, Vembu
author_facet Rajagopal, Venkatachalam
Manivel, Perumal
Nesakumar, Noel
Kathiresan, Murugavel
Velayutham, David
Suryanarayanan, Vembu
author_sort Rajagopal, Venkatachalam
collection PubMed
description [Image: see text] Different compositions of trimetallic alloy containing silver, copper, and nickel (Ag(x)Cu(y)Ni(z)) were electrodecorated in a protic ionic liquid medium on glassy carbon electrodes in order to investigate the suitability of the materials as catalysts for electrochemical reduction of carbon dioxide (CO(2)). Surface characteristic morphology obtained by scanning electron microscopy shows cauliflower crystallites for the deposit of Ag, whereas materials of Cu and Ni exhibit cubic grains and fine particles, respectively. Deposits of trimetallic alloy containing Ag, Cu, and Ni exhibit the mixture of the three characteristic features. Further, trimetallic alloy containing a large amount of Ag provides high crystallinity, whereas predominance of Cu as well as Ni results in porous structures, as revealed by X-ray diffraction analysis. Atomic absorption spectroscopy () was used to determine the compositions of different alloy materials. The suitability of nanomaterials as cathodes for electroreduction of benzyl bromide in CO(2) containing 0.1 M tetra-n-butylammonium tetrafluoroborate (DMF/TBABF(4))/N,N-dimethylformamide medium was explored. The linear sweep voltammogram reveals that Ag(46)Cu(40)Ni(14) shows higher cathodic peak current and lower cathodic peak potential than those of other deposited nanomaterials as well as alloys, indicating its higher catalytic activity for such an electroreduction process, whereas potentiostatic electrolysis confirms the abovementioned results.
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spelling pubmed-66433922019-08-27 Ag(x)Cu(y)Ni(z) Trimetallic Alloy Catalysts for the Electrocatalytic Reduction of Benzyl Bromide in the Presence of Carbon Dioxide Rajagopal, Venkatachalam Manivel, Perumal Nesakumar, Noel Kathiresan, Murugavel Velayutham, David Suryanarayanan, Vembu ACS Omega [Image: see text] Different compositions of trimetallic alloy containing silver, copper, and nickel (Ag(x)Cu(y)Ni(z)) were electrodecorated in a protic ionic liquid medium on glassy carbon electrodes in order to investigate the suitability of the materials as catalysts for electrochemical reduction of carbon dioxide (CO(2)). Surface characteristic morphology obtained by scanning electron microscopy shows cauliflower crystallites for the deposit of Ag, whereas materials of Cu and Ni exhibit cubic grains and fine particles, respectively. Deposits of trimetallic alloy containing Ag, Cu, and Ni exhibit the mixture of the three characteristic features. Further, trimetallic alloy containing a large amount of Ag provides high crystallinity, whereas predominance of Cu as well as Ni results in porous structures, as revealed by X-ray diffraction analysis. Atomic absorption spectroscopy () was used to determine the compositions of different alloy materials. The suitability of nanomaterials as cathodes for electroreduction of benzyl bromide in CO(2) containing 0.1 M tetra-n-butylammonium tetrafluoroborate (DMF/TBABF(4))/N,N-dimethylformamide medium was explored. The linear sweep voltammogram reveals that Ag(46)Cu(40)Ni(14) shows higher cathodic peak current and lower cathodic peak potential than those of other deposited nanomaterials as well as alloys, indicating its higher catalytic activity for such an electroreduction process, whereas potentiostatic electrolysis confirms the abovementioned results. American Chemical Society 2018-12-12 /pmc/articles/PMC6643392/ /pubmed/31458333 http://dx.doi.org/10.1021/acsomega.8b02715 Text en Copyright © 2018 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Rajagopal, Venkatachalam
Manivel, Perumal
Nesakumar, Noel
Kathiresan, Murugavel
Velayutham, David
Suryanarayanan, Vembu
Ag(x)Cu(y)Ni(z) Trimetallic Alloy Catalysts for the Electrocatalytic Reduction of Benzyl Bromide in the Presence of Carbon Dioxide
title Ag(x)Cu(y)Ni(z) Trimetallic Alloy Catalysts for the Electrocatalytic Reduction of Benzyl Bromide in the Presence of Carbon Dioxide
title_full Ag(x)Cu(y)Ni(z) Trimetallic Alloy Catalysts for the Electrocatalytic Reduction of Benzyl Bromide in the Presence of Carbon Dioxide
title_fullStr Ag(x)Cu(y)Ni(z) Trimetallic Alloy Catalysts for the Electrocatalytic Reduction of Benzyl Bromide in the Presence of Carbon Dioxide
title_full_unstemmed Ag(x)Cu(y)Ni(z) Trimetallic Alloy Catalysts for the Electrocatalytic Reduction of Benzyl Bromide in the Presence of Carbon Dioxide
title_short Ag(x)Cu(y)Ni(z) Trimetallic Alloy Catalysts for the Electrocatalytic Reduction of Benzyl Bromide in the Presence of Carbon Dioxide
title_sort ag(x)cu(y)ni(z) trimetallic alloy catalysts for the electrocatalytic reduction of benzyl bromide in the presence of carbon dioxide
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6643392/
https://www.ncbi.nlm.nih.gov/pubmed/31458333
http://dx.doi.org/10.1021/acsomega.8b02715
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