Cargando…

Electrospun PVA Polymer Embedded with Ceria Nanoparticles as Silicon Solar Cells Rear Surface Coaters for Efficiency Improvement

This paper introduces electrospun nanofibers embedded with ceria nanoparticles as silicon solar cells coaters, showing their influence on the solar cells efficiency. Ceria nanoparticles can be synthesized to have formed oxygen vacancies (O-vacancies), which are associated with converting cerium ions...

Descripción completa

Detalles Bibliográficos
Autores principales: Samir, Effat, Salah, Mohamed, Hajjiah, Ali, Shehata, Nader, Fathy, Marwa, Hamed, Aya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6404003/
https://www.ncbi.nlm.nih.gov/pubmed/30966643
http://dx.doi.org/10.3390/polym10060609
_version_ 1783400767082725376
author Samir, Effat
Salah, Mohamed
Hajjiah, Ali
Shehata, Nader
Fathy, Marwa
Hamed, Aya
author_facet Samir, Effat
Salah, Mohamed
Hajjiah, Ali
Shehata, Nader
Fathy, Marwa
Hamed, Aya
author_sort Samir, Effat
collection PubMed
description This paper introduces electrospun nanofibers embedded with ceria nanoparticles as silicon solar cells coaters, showing their influence on the solar cells efficiency. Ceria nanoparticles can be synthesized to have formed oxygen vacancies (O-vacancies), which are associated with converting cerium ions from the Ce(4+) state ions to the Ce(3+) ones. These O-vacancies follow the rule of improving silicon solar cellconductivity through the hopping mechanism. Besides, under violet excitation, the reduced trivalent cerium Ce(3+) ions are directly responsible for down-converting the un-absorbed violet or ultra-violet (UV) wavelengths to a resulted green fluorescence emission at ~520 nm. These are absorbed through the silicon solar cells active layer. When electrospun Poly(vinyl alcohol) (PVA) is embedded with ceria nanoparticles on the rear surface of silicon solar cell, a promising enhancement in the behavior of solar cells current–voltage (I–V) curve is observed. The efficiency has improved by about 24% of its initial value due to the mutual impact of improving both electrical conductivity and optical conversions from the higher surface-to-volume ratio of electrospun nanofibers embedded by ceria nanoparticles. The solar cell efficiency improvement is due to the mutual impact of both optical down-conversion and better electric paths via the used nanocomposite. The added nanostructures coating can utilize part of the transmitted UV or violet spectrum through the cell as optical conversion from violet to the visible region. In addition, the formed active tri-valent states are associated with O-vacancies which can help in a better conductivity of the generated photoelectrons from the cell through the hopping mechanism. The PVA nanofibers host offers a better distribution of ceria nanoparticles and better conductivity paths for the photoelectrons based on the better surface-to-volume ratio of the nanofibers.
format Online
Article
Text
id pubmed-6404003
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-64040032019-04-02 Electrospun PVA Polymer Embedded with Ceria Nanoparticles as Silicon Solar Cells Rear Surface Coaters for Efficiency Improvement Samir, Effat Salah, Mohamed Hajjiah, Ali Shehata, Nader Fathy, Marwa Hamed, Aya Polymers (Basel) Article This paper introduces electrospun nanofibers embedded with ceria nanoparticles as silicon solar cells coaters, showing their influence on the solar cells efficiency. Ceria nanoparticles can be synthesized to have formed oxygen vacancies (O-vacancies), which are associated with converting cerium ions from the Ce(4+) state ions to the Ce(3+) ones. These O-vacancies follow the rule of improving silicon solar cellconductivity through the hopping mechanism. Besides, under violet excitation, the reduced trivalent cerium Ce(3+) ions are directly responsible for down-converting the un-absorbed violet or ultra-violet (UV) wavelengths to a resulted green fluorescence emission at ~520 nm. These are absorbed through the silicon solar cells active layer. When electrospun Poly(vinyl alcohol) (PVA) is embedded with ceria nanoparticles on the rear surface of silicon solar cell, a promising enhancement in the behavior of solar cells current–voltage (I–V) curve is observed. The efficiency has improved by about 24% of its initial value due to the mutual impact of improving both electrical conductivity and optical conversions from the higher surface-to-volume ratio of electrospun nanofibers embedded by ceria nanoparticles. The solar cell efficiency improvement is due to the mutual impact of both optical down-conversion and better electric paths via the used nanocomposite. The added nanostructures coating can utilize part of the transmitted UV or violet spectrum through the cell as optical conversion from violet to the visible region. In addition, the formed active tri-valent states are associated with O-vacancies which can help in a better conductivity of the generated photoelectrons from the cell through the hopping mechanism. The PVA nanofibers host offers a better distribution of ceria nanoparticles and better conductivity paths for the photoelectrons based on the better surface-to-volume ratio of the nanofibers. MDPI 2018-06-04 /pmc/articles/PMC6404003/ /pubmed/30966643 http://dx.doi.org/10.3390/polym10060609 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Samir, Effat
Salah, Mohamed
Hajjiah, Ali
Shehata, Nader
Fathy, Marwa
Hamed, Aya
Electrospun PVA Polymer Embedded with Ceria Nanoparticles as Silicon Solar Cells Rear Surface Coaters for Efficiency Improvement
title Electrospun PVA Polymer Embedded with Ceria Nanoparticles as Silicon Solar Cells Rear Surface Coaters for Efficiency Improvement
title_full Electrospun PVA Polymer Embedded with Ceria Nanoparticles as Silicon Solar Cells Rear Surface Coaters for Efficiency Improvement
title_fullStr Electrospun PVA Polymer Embedded with Ceria Nanoparticles as Silicon Solar Cells Rear Surface Coaters for Efficiency Improvement
title_full_unstemmed Electrospun PVA Polymer Embedded with Ceria Nanoparticles as Silicon Solar Cells Rear Surface Coaters for Efficiency Improvement
title_short Electrospun PVA Polymer Embedded with Ceria Nanoparticles as Silicon Solar Cells Rear Surface Coaters for Efficiency Improvement
title_sort electrospun pva polymer embedded with ceria nanoparticles as silicon solar cells rear surface coaters for efficiency improvement
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6404003/
https://www.ncbi.nlm.nih.gov/pubmed/30966643
http://dx.doi.org/10.3390/polym10060609
work_keys_str_mv AT samireffat electrospunpvapolymerembeddedwithceriananoparticlesassiliconsolarcellsrearsurfacecoatersforefficiencyimprovement
AT salahmohamed electrospunpvapolymerembeddedwithceriananoparticlesassiliconsolarcellsrearsurfacecoatersforefficiencyimprovement
AT hajjiahali electrospunpvapolymerembeddedwithceriananoparticlesassiliconsolarcellsrearsurfacecoatersforefficiencyimprovement
AT shehatanader electrospunpvapolymerembeddedwithceriananoparticlesassiliconsolarcellsrearsurfacecoatersforefficiencyimprovement
AT fathymarwa electrospunpvapolymerembeddedwithceriananoparticlesassiliconsolarcellsrearsurfacecoatersforefficiencyimprovement
AT hamedaya electrospunpvapolymerembeddedwithceriananoparticlesassiliconsolarcellsrearsurfacecoatersforefficiencyimprovement