研究目的
To investigate the luminescent downshifting potential of ns-laser irradiated Au doped sodalime coverglass, and its effect on the power conversion efficiency of solar cell.
研究成果
The study demonstrated that Au-doped sodalime silicate glass, when treated with ns-laser irradiation, can effectively downshift the solar spectrum and enhance the power conversion efficiency of solar cells. The treated samples showed significant improvement in luminescence intensity and hardness, making them suitable for solar cell applications.
研究不足
The study focuses on the enhancement of solar cell efficiency via luminescent downshifting by an optimized coverglass, but the practical application and scalability of the technique in commercial solar cells are not discussed. The effect of environmental factors on the performance of the treated coverglass is also not explored.
1:Experimental Design and Method Selection:
Gold metal ions were diffused into a commercially available sodalime silicate glass using a field-assisted solid-state ion diffusion technique under different experimental conditions. Some samples were irradiated with ns-laser to segregate the diffused ions into dimers and trimers.
2:Sample Selection and Data Sources:
Commercially available sodalime silicate glass with specific atomic% composition was used.
3:List of Experimental Equipment and Materials:
PerkinElmer Spectrum Two Fourier transform infrared spectrometer, PerkinElmer Lambda 1050 spectrophotometer, PerkinElmer spectro-fluorometer, Q-switched Nd:YAG laser (Q-smart 850, Quantel, France), BPW34 Photo-diodes, Peltier cooler (TEC1-12706), Arduino UNO ATmega 328, USB TC-08 Pico data logger, Solaronix Lumixo-S light engine, Keithley 2410 source-meter.
4:Experimental Procedures and Operational Workflow:
Samples were treated with an externally applied electric field at 400 °C for the diffusion duration of 1–7 h. Nanosecond laser irradiation was carried out using 355 nm laser pulses. FTIR, optical absorption, and photoluminescence measurements were performed.
5:Data Analysis Methods:
Analysis of FTIR spectra, optical absorption profiles, and photoluminescence spectra to investigate structural modifications, presence of resonant plasmonic absorption, and luminescent downshifting properties.
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PerkinElmer Spectrum Two Fourier transform infrared spectrometer
Spectrum Two
PerkinElmer
To collect infra-red transmission spectra in the range of 400–1800 cm?1
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PerkinElmer Lambda 1050 spectrophotometer
Lambda 1050
PerkinElmer
To record optical absorption spectra at room temperature in the range of 280–800 nm
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Q-switched Nd:YAG laser
Q-smart 850
Quantel
To irradiate samples with 355 nm laser pulses
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Keithley 2410 source-meter
2410
Keithley
To obtain IV and PV characteristics
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PerkinElmer spectro-fluorometer
PerkinElmer
To record photoluminescence spectra
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BPW34 Photo-diodes
BPW34
Used as a test solar cell at standard test conditions
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Peltier cooler
TEC1-12706
To maintain the cell temperature at 25 °C
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Arduino UNO ATmega 328
UNO ATmega 328
Arduino
To control the Peltier cooler
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USB TC-08 Pico data logger
TC-08
Pico
To acquire the temperature of PV cell
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Solaronix Lumixo-S light engine
Lumixo-S
Solaronix
To achieve irradiance of 1 sun as per standards
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