Ni-Mo bimetallic oxides/rGO nanocomposites as counter electrode for the application of DSSCs

The one-pot chemical reduction process was used to generate the bimetallic Ni?Mo nanoparticles attached to reduced graphene oxide (rGO) nanocomposite, which was then used as an effective counter electrode in dye-sensitized solar cells (DSSC). Diffraction patterns were used to investigate the face-ce...

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Main Authors: Visnupriya S., Prabavathi N., Vijayakumar P.
Other Authors: 57421179400
Format: Article
Published: Elsevier B.V. 2025
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spelling my.uniten.dspace-366262025-03-03T15:43:29Z Ni-Mo bimetallic oxides/rGO nanocomposites as counter electrode for the application of DSSCs Visnupriya S. Prabavathi N. Vijayakumar P. 57421179400 23480492900 56742208000 The one-pot chemical reduction process was used to generate the bimetallic Ni?Mo nanoparticles attached to reduced graphene oxide (rGO) nanocomposite, which was then used as an effective counter electrode in dye-sensitized solar cells (DSSC). Diffraction patterns were used to investigate the face-centered crystalline structure of the spherical-shaped Ni?Mo nanoparticles that were uniformly anchored over the surface of rGO. The nanoparticles had an average diameter ranging from 70 to 120 nm. Raman spectroscopy was utilized to investigate the structural interaction that was created by the presence of bimetallic nanoparticles and the graphene oxide support. In addition, the rGO/Ni?Mo counter electrode equipped DSSC demonstrated the highest solar to electrical energy conversion efficiency of 3.11% under irradiation from one sun with a fill factor (FF) of 0.48. ? 2024 Final 2025-03-03T07:43:29Z 2025-03-03T07:43:29Z 2024 Article 10.1016/j.chphi.2024.100598 2-s2.0-85189781154 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85189781154&doi=10.1016%2fj.chphi.2024.100598&partnerID=40&md5=77b84246636251bd42515e10c9d26c7d https://irepository.uniten.edu.my/handle/123456789/36626 8 100598 All Open Access; Gold Open Access Elsevier B.V. Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description The one-pot chemical reduction process was used to generate the bimetallic Ni?Mo nanoparticles attached to reduced graphene oxide (rGO) nanocomposite, which was then used as an effective counter electrode in dye-sensitized solar cells (DSSC). Diffraction patterns were used to investigate the face-centered crystalline structure of the spherical-shaped Ni?Mo nanoparticles that were uniformly anchored over the surface of rGO. The nanoparticles had an average diameter ranging from 70 to 120 nm. Raman spectroscopy was utilized to investigate the structural interaction that was created by the presence of bimetallic nanoparticles and the graphene oxide support. In addition, the rGO/Ni?Mo counter electrode equipped DSSC demonstrated the highest solar to electrical energy conversion efficiency of 3.11% under irradiation from one sun with a fill factor (FF) of 0.48. ? 2024
author2 57421179400
author_facet 57421179400
Visnupriya S.
Prabavathi N.
Vijayakumar P.
format Article
author Visnupriya S.
Prabavathi N.
Vijayakumar P.
spellingShingle Visnupriya S.
Prabavathi N.
Vijayakumar P.
Ni-Mo bimetallic oxides/rGO nanocomposites as counter electrode for the application of DSSCs
author_sort Visnupriya S.
title Ni-Mo bimetallic oxides/rGO nanocomposites as counter electrode for the application of DSSCs
title_short Ni-Mo bimetallic oxides/rGO nanocomposites as counter electrode for the application of DSSCs
title_full Ni-Mo bimetallic oxides/rGO nanocomposites as counter electrode for the application of DSSCs
title_fullStr Ni-Mo bimetallic oxides/rGO nanocomposites as counter electrode for the application of DSSCs
title_full_unstemmed Ni-Mo bimetallic oxides/rGO nanocomposites as counter electrode for the application of DSSCs
title_sort ni-mo bimetallic oxides/rgo nanocomposites as counter electrode for the application of dsscs
publisher Elsevier B.V.
publishDate 2025
_version_ 1825816278314516480
score 13.244413