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Probing the stoichiometry dependent catalytic activity of nickel selenide counter electrodes in the redox reaction of iodide/triiodide electrolyte in dye sensitized solar cells

Nickel selenide (Ni(x)Se(y)) systems have received much attention in recent years as potential low cost counter electrodes (CEs) in dye sensitized solar cells (DSSCs). Their electrocatalytic activities are comparable to that of the conventional platinum CE. Despite their achievements, the effect of...

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Autores principales: Airo, Mildred A., Otieno, Francis, Mxakaza, Lineo, Ipadeola, Adewale, Kadzutu-Sithole, Rudo S., Machogo-Phao, Lerato F. E., Billing, Caren, Moloto, Makwena, Moloto, Nosipho
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9057497/
https://www.ncbi.nlm.nih.gov/pubmed/35515413
http://dx.doi.org/10.1039/d0ra06150f
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author Airo, Mildred A.
Otieno, Francis
Mxakaza, Lineo
Ipadeola, Adewale
Kadzutu-Sithole, Rudo S.
Machogo-Phao, Lerato F. E.
Billing, Caren
Moloto, Makwena
Moloto, Nosipho
author_facet Airo, Mildred A.
Otieno, Francis
Mxakaza, Lineo
Ipadeola, Adewale
Kadzutu-Sithole, Rudo S.
Machogo-Phao, Lerato F. E.
Billing, Caren
Moloto, Makwena
Moloto, Nosipho
author_sort Airo, Mildred A.
collection PubMed
description Nickel selenide (Ni(x)Se(y)) systems have received much attention in recent years as potential low cost counter electrodes (CEs) in dye sensitized solar cells (DSSCs). Their electrocatalytic activities are comparable to that of the conventional platinum CE. Despite their achievements, the effect of stoichiometry on their catalytic performance as CEs in DSSCs still remains unclear, hence the motivation for this work. Different stoichiometries of Ni(x)Se(y) were synthesized via a colloidal method in oleylamine or oleylamine/oleic acid mixture at the appropriate synthetic temperature and Ni to Se precursor ratio. X-ray diffraction revealed that different stoichiometries of nickel selenide were formed namely, NiSe(2), Ni(3)Se(4), Ni(0.85)Se, NiSe and Ni(3)Se(2). Scanning electron microscopy showed that all the stoichiometries had predominantly spherical-like morphologies. Cyclic voltammetry, electrochemical impedance spectroscopy analysis and the photovoltaic performances of the DSSCs fabricated using the different Ni(x)Se(y) CEs revealed that selenium rich stoichiometries performed better than the nickel rich ones. Consequently, the catalytic activity towards the redox reaction of the triiodide/iodide electrolyte and hence the power conversion efficiency (PCE) followed the order of NiSe(2) > Ni(3)Se(4) > Ni(0.85)Se > NiSe > Ni(3)Se(2) with PCE values of 3.31%, 3.25%, 3.17%, 2.35% and 1.52% respectively under ambient conditions.
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spelling pubmed-90574972022-05-04 Probing the stoichiometry dependent catalytic activity of nickel selenide counter electrodes in the redox reaction of iodide/triiodide electrolyte in dye sensitized solar cells Airo, Mildred A. Otieno, Francis Mxakaza, Lineo Ipadeola, Adewale Kadzutu-Sithole, Rudo S. Machogo-Phao, Lerato F. E. Billing, Caren Moloto, Makwena Moloto, Nosipho RSC Adv Chemistry Nickel selenide (Ni(x)Se(y)) systems have received much attention in recent years as potential low cost counter electrodes (CEs) in dye sensitized solar cells (DSSCs). Their electrocatalytic activities are comparable to that of the conventional platinum CE. Despite their achievements, the effect of stoichiometry on their catalytic performance as CEs in DSSCs still remains unclear, hence the motivation for this work. Different stoichiometries of Ni(x)Se(y) were synthesized via a colloidal method in oleylamine or oleylamine/oleic acid mixture at the appropriate synthetic temperature and Ni to Se precursor ratio. X-ray diffraction revealed that different stoichiometries of nickel selenide were formed namely, NiSe(2), Ni(3)Se(4), Ni(0.85)Se, NiSe and Ni(3)Se(2). Scanning electron microscopy showed that all the stoichiometries had predominantly spherical-like morphologies. Cyclic voltammetry, electrochemical impedance spectroscopy analysis and the photovoltaic performances of the DSSCs fabricated using the different Ni(x)Se(y) CEs revealed that selenium rich stoichiometries performed better than the nickel rich ones. Consequently, the catalytic activity towards the redox reaction of the triiodide/iodide electrolyte and hence the power conversion efficiency (PCE) followed the order of NiSe(2) > Ni(3)Se(4) > Ni(0.85)Se > NiSe > Ni(3)Se(2) with PCE values of 3.31%, 3.25%, 3.17%, 2.35% and 1.52% respectively under ambient conditions. The Royal Society of Chemistry 2020-10-28 /pmc/articles/PMC9057497/ /pubmed/35515413 http://dx.doi.org/10.1039/d0ra06150f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Airo, Mildred A.
Otieno, Francis
Mxakaza, Lineo
Ipadeola, Adewale
Kadzutu-Sithole, Rudo S.
Machogo-Phao, Lerato F. E.
Billing, Caren
Moloto, Makwena
Moloto, Nosipho
Probing the stoichiometry dependent catalytic activity of nickel selenide counter electrodes in the redox reaction of iodide/triiodide electrolyte in dye sensitized solar cells
title Probing the stoichiometry dependent catalytic activity of nickel selenide counter electrodes in the redox reaction of iodide/triiodide electrolyte in dye sensitized solar cells
title_full Probing the stoichiometry dependent catalytic activity of nickel selenide counter electrodes in the redox reaction of iodide/triiodide electrolyte in dye sensitized solar cells
title_fullStr Probing the stoichiometry dependent catalytic activity of nickel selenide counter electrodes in the redox reaction of iodide/triiodide electrolyte in dye sensitized solar cells
title_full_unstemmed Probing the stoichiometry dependent catalytic activity of nickel selenide counter electrodes in the redox reaction of iodide/triiodide electrolyte in dye sensitized solar cells
title_short Probing the stoichiometry dependent catalytic activity of nickel selenide counter electrodes in the redox reaction of iodide/triiodide electrolyte in dye sensitized solar cells
title_sort probing the stoichiometry dependent catalytic activity of nickel selenide counter electrodes in the redox reaction of iodide/triiodide electrolyte in dye sensitized solar cells
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9057497/
https://www.ncbi.nlm.nih.gov/pubmed/35515413
http://dx.doi.org/10.1039/d0ra06150f
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