Characterization of Plasmonic Scattering, Luminescent Down-Shifting, and Metal-Enhanced Fluorescence and Applications on Silicon Solar Cells

This paper studied characterized the plasmonic effects of silver nanoparticles (Ag-NPs), the luminescent down-shifting of Eu-doped phosphor particles, and the metal-enhanced fluorescence (MEF) achieved by combining the two processes to enhance the conversion efficiency of silicon solar cells. We obt...

Full description

Bibliographic Details
Main Authors: Wen-Jeng Ho, Jheng-Jie Liu, Jhih-Ciang Chen
Format: Article
Language:English
Published: MDPI AG 2021-04-01
Series:Nanomaterials
Subjects:
Online Access:https://www.mdpi.com/2079-4991/11/4/1013
id doaj-0640a9e5407a4c4f888e51126a55152d
record_format Article
spelling doaj-0640a9e5407a4c4f888e51126a55152d2021-04-15T23:04:04ZengMDPI AGNanomaterials2079-49912021-04-01111013101310.3390/nano11041013Characterization of Plasmonic Scattering, Luminescent Down-Shifting, and Metal-Enhanced Fluorescence and Applications on Silicon Solar CellsWen-Jeng Ho0Jheng-Jie Liu1Jhih-Ciang Chen2Department of Electro-Optical Engineering, National Taipei University of Technology, No. 1, Section 3, Zhongxiao East Road, Taipei 10608, TaiwanDepartment of Electro-Optical Engineering, National Taipei University of Technology, No. 1, Section 3, Zhongxiao East Road, Taipei 10608, TaiwanDepartment of Electro-Optical Engineering, National Taipei University of Technology, No. 1, Section 3, Zhongxiao East Road, Taipei 10608, TaiwanThis paper studied characterized the plasmonic effects of silver nanoparticles (Ag-NPs), the luminescent down-shifting of Eu-doped phosphor particles, and the metal-enhanced fluorescence (MEF) achieved by combining the two processes to enhance the conversion efficiency of silicon solar cells. We obtained measurements of photoluminescence (PL) and external quantum efficiency (EQE) at room temperature to determine whether the fluorescence emissions intensity of Eu-doped phosphor was enhanced or quenched by excitation induced via surface plasmon resonance (SPR). Overall, fluorescence intensity was enhanced when the fluorescence emission band was strongly coupled to the SPR band of Ag-NPs and the two particles were separated by a suitable distance. We observed a 1.125× increase in PL fluorescence intensity at a wavelength of 514 nm and a 7.05% improvement in EQE (from 57.96% to 62.05%) attributable to MEF effects. The combined effects led to a 26.02% increase in conversion efficiency (from 10.23% to 12.89%) in the cell with spacer/NPs/SOG-phosphors and a 22.09% increase (from 10.23% to 12.48%) in the cell with spacer/SOG-phosphors, compared to the bare solar cell. This corresponds to an impressive 0.85% increase in absolute efficiency (from 12.04% to 12.89%), compared to the cell with only spacer/SOG.https://www.mdpi.com/2079-4991/11/4/1013Eu-doped phosphorsfluorescence emissionluminescent down-shiftingmetal enhanced fluorescencesurface plasmon resonancesilver nanoparticles
collection DOAJ
language English
format Article
sources DOAJ
author Wen-Jeng Ho
Jheng-Jie Liu
Jhih-Ciang Chen
spellingShingle Wen-Jeng Ho
Jheng-Jie Liu
Jhih-Ciang Chen
Characterization of Plasmonic Scattering, Luminescent Down-Shifting, and Metal-Enhanced Fluorescence and Applications on Silicon Solar Cells
Nanomaterials
Eu-doped phosphors
fluorescence emission
luminescent down-shifting
metal enhanced fluorescence
surface plasmon resonance
silver nanoparticles
author_facet Wen-Jeng Ho
Jheng-Jie Liu
Jhih-Ciang Chen
author_sort Wen-Jeng Ho
title Characterization of Plasmonic Scattering, Luminescent Down-Shifting, and Metal-Enhanced Fluorescence and Applications on Silicon Solar Cells
title_short Characterization of Plasmonic Scattering, Luminescent Down-Shifting, and Metal-Enhanced Fluorescence and Applications on Silicon Solar Cells
title_full Characterization of Plasmonic Scattering, Luminescent Down-Shifting, and Metal-Enhanced Fluorescence and Applications on Silicon Solar Cells
title_fullStr Characterization of Plasmonic Scattering, Luminescent Down-Shifting, and Metal-Enhanced Fluorescence and Applications on Silicon Solar Cells
title_full_unstemmed Characterization of Plasmonic Scattering, Luminescent Down-Shifting, and Metal-Enhanced Fluorescence and Applications on Silicon Solar Cells
title_sort characterization of plasmonic scattering, luminescent down-shifting, and metal-enhanced fluorescence and applications on silicon solar cells
publisher MDPI AG
series Nanomaterials
issn 2079-4991
publishDate 2021-04-01
description This paper studied characterized the plasmonic effects of silver nanoparticles (Ag-NPs), the luminescent down-shifting of Eu-doped phosphor particles, and the metal-enhanced fluorescence (MEF) achieved by combining the two processes to enhance the conversion efficiency of silicon solar cells. We obtained measurements of photoluminescence (PL) and external quantum efficiency (EQE) at room temperature to determine whether the fluorescence emissions intensity of Eu-doped phosphor was enhanced or quenched by excitation induced via surface plasmon resonance (SPR). Overall, fluorescence intensity was enhanced when the fluorescence emission band was strongly coupled to the SPR band of Ag-NPs and the two particles were separated by a suitable distance. We observed a 1.125× increase in PL fluorescence intensity at a wavelength of 514 nm and a 7.05% improvement in EQE (from 57.96% to 62.05%) attributable to MEF effects. The combined effects led to a 26.02% increase in conversion efficiency (from 10.23% to 12.89%) in the cell with spacer/NPs/SOG-phosphors and a 22.09% increase (from 10.23% to 12.48%) in the cell with spacer/SOG-phosphors, compared to the bare solar cell. This corresponds to an impressive 0.85% increase in absolute efficiency (from 12.04% to 12.89%), compared to the cell with only spacer/SOG.
topic Eu-doped phosphors
fluorescence emission
luminescent down-shifting
metal enhanced fluorescence
surface plasmon resonance
silver nanoparticles
url https://www.mdpi.com/2079-4991/11/4/1013
work_keys_str_mv AT wenjengho characterizationofplasmonicscatteringluminescentdownshiftingandmetalenhancedfluorescenceandapplicationsonsiliconsolarcells
AT jhengjieliu characterizationofplasmonicscatteringluminescentdownshiftingandmetalenhancedfluorescenceandapplicationsonsiliconsolarcells
AT jhihciangchen characterizationofplasmonicscatteringluminescentdownshiftingandmetalenhancedfluorescenceandapplicationsonsiliconsolarcells
_version_ 1721525809140727808