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Electrical Transport, Structural, Optical and Thermal Properties of [(1−x)Succinonitrile: xPEO]-LiTFSI-Co(bpy)(3)(TFSI)(2)-Co(bpy)(3)(TFSI)(3) Solid Redox Mediators

The solar cell has been considered one of the safest modes for electricity generation. In a dye-sensitized solar cell, a commonly used iodide/triiodide redox mediator inhibits back-electron transfer reactions, regenerates dyes, and reduces triiodide into iodide. The use of iodide/triiodide redox, ho...

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Autores principales: Gupta, Ravindra Kumar, Shaikh, Hamid, Imran, Ahamad, Bedja, Idriss, Ajaj, Abrar Fahad, Aldwayyan, Abdullah Saleh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9101716/
https://www.ncbi.nlm.nih.gov/pubmed/35567039
http://dx.doi.org/10.3390/polym14091870
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author Gupta, Ravindra Kumar
Shaikh, Hamid
Imran, Ahamad
Bedja, Idriss
Ajaj, Abrar Fahad
Aldwayyan, Abdullah Saleh
author_facet Gupta, Ravindra Kumar
Shaikh, Hamid
Imran, Ahamad
Bedja, Idriss
Ajaj, Abrar Fahad
Aldwayyan, Abdullah Saleh
author_sort Gupta, Ravindra Kumar
collection PubMed
description The solar cell has been considered one of the safest modes for electricity generation. In a dye-sensitized solar cell, a commonly used iodide/triiodide redox mediator inhibits back-electron transfer reactions, regenerates dyes, and reduces triiodide into iodide. The use of iodide/triiodide redox, however, imposes several problems and hence needs to be replaced by alternative redox. This paper reports the first Co(2+)/Co(3+) solid redox mediators, prepared using [(1−x)succinonitrile: xPEO] as a matrix and LiTFSI, Co(bpy)(3)(TFSI)(2), and Co(bpy)(3)(TFSI)(3) as sources of ions. The electrolytes are referred to as SN_E (x = 0), Blend 1_E (x = 0.5 with the ethereal oxygen of the PEO-to-lithium ion molar ratio (EO/Li(+)) of 113), Blend 2_E (x = 0.5; EO/Li(+) = 226), and PEO_E (x = 1; EO/Li(+) = 226), which achieved electrical conductivity of 2.1 × 10(−3), 4.3 × 10(−4), 7.2 × 10(−4), and 9.7 × 10(−7) S cm(−1), respectively at 25 °C. Only the blend-based polymer electrolytes exhibited the Vogel-Tamman-Fulcher-type behavior (vitreous nature) with a required low pseudo-activation energy (0.05 eV), thermal stability up to 125 °C, and transparency in UV-A, visible, and near-infrared regions. FT-IR spectroscopy demonstrated the interaction between salt and matrix in the following order: SN_E < Blend 2_E < Blend 1_E << PEO_E. The results were compared with those of acetonitrile-based liquid electrolyte, ACN_E.
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spelling pubmed-91017162022-05-14 Electrical Transport, Structural, Optical and Thermal Properties of [(1−x)Succinonitrile: xPEO]-LiTFSI-Co(bpy)(3)(TFSI)(2)-Co(bpy)(3)(TFSI)(3) Solid Redox Mediators Gupta, Ravindra Kumar Shaikh, Hamid Imran, Ahamad Bedja, Idriss Ajaj, Abrar Fahad Aldwayyan, Abdullah Saleh Polymers (Basel) Article The solar cell has been considered one of the safest modes for electricity generation. In a dye-sensitized solar cell, a commonly used iodide/triiodide redox mediator inhibits back-electron transfer reactions, regenerates dyes, and reduces triiodide into iodide. The use of iodide/triiodide redox, however, imposes several problems and hence needs to be replaced by alternative redox. This paper reports the first Co(2+)/Co(3+) solid redox mediators, prepared using [(1−x)succinonitrile: xPEO] as a matrix and LiTFSI, Co(bpy)(3)(TFSI)(2), and Co(bpy)(3)(TFSI)(3) as sources of ions. The electrolytes are referred to as SN_E (x = 0), Blend 1_E (x = 0.5 with the ethereal oxygen of the PEO-to-lithium ion molar ratio (EO/Li(+)) of 113), Blend 2_E (x = 0.5; EO/Li(+) = 226), and PEO_E (x = 1; EO/Li(+) = 226), which achieved electrical conductivity of 2.1 × 10(−3), 4.3 × 10(−4), 7.2 × 10(−4), and 9.7 × 10(−7) S cm(−1), respectively at 25 °C. Only the blend-based polymer electrolytes exhibited the Vogel-Tamman-Fulcher-type behavior (vitreous nature) with a required low pseudo-activation energy (0.05 eV), thermal stability up to 125 °C, and transparency in UV-A, visible, and near-infrared regions. FT-IR spectroscopy demonstrated the interaction between salt and matrix in the following order: SN_E < Blend 2_E < Blend 1_E << PEO_E. The results were compared with those of acetonitrile-based liquid electrolyte, ACN_E. MDPI 2022-05-03 /pmc/articles/PMC9101716/ /pubmed/35567039 http://dx.doi.org/10.3390/polym14091870 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gupta, Ravindra Kumar
Shaikh, Hamid
Imran, Ahamad
Bedja, Idriss
Ajaj, Abrar Fahad
Aldwayyan, Abdullah Saleh
Electrical Transport, Structural, Optical and Thermal Properties of [(1−x)Succinonitrile: xPEO]-LiTFSI-Co(bpy)(3)(TFSI)(2)-Co(bpy)(3)(TFSI)(3) Solid Redox Mediators
title Electrical Transport, Structural, Optical and Thermal Properties of [(1−x)Succinonitrile: xPEO]-LiTFSI-Co(bpy)(3)(TFSI)(2)-Co(bpy)(3)(TFSI)(3) Solid Redox Mediators
title_full Electrical Transport, Structural, Optical and Thermal Properties of [(1−x)Succinonitrile: xPEO]-LiTFSI-Co(bpy)(3)(TFSI)(2)-Co(bpy)(3)(TFSI)(3) Solid Redox Mediators
title_fullStr Electrical Transport, Structural, Optical and Thermal Properties of [(1−x)Succinonitrile: xPEO]-LiTFSI-Co(bpy)(3)(TFSI)(2)-Co(bpy)(3)(TFSI)(3) Solid Redox Mediators
title_full_unstemmed Electrical Transport, Structural, Optical and Thermal Properties of [(1−x)Succinonitrile: xPEO]-LiTFSI-Co(bpy)(3)(TFSI)(2)-Co(bpy)(3)(TFSI)(3) Solid Redox Mediators
title_short Electrical Transport, Structural, Optical and Thermal Properties of [(1−x)Succinonitrile: xPEO]-LiTFSI-Co(bpy)(3)(TFSI)(2)-Co(bpy)(3)(TFSI)(3) Solid Redox Mediators
title_sort electrical transport, structural, optical and thermal properties of [(1−x)succinonitrile: xpeo]-litfsi-co(bpy)(3)(tfsi)(2)-co(bpy)(3)(tfsi)(3) solid redox mediators
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9101716/
https://www.ncbi.nlm.nih.gov/pubmed/35567039
http://dx.doi.org/10.3390/polym14091870
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