研究目的
Investigating the optical characteristics of Te4+/Yb3+ co-doped tellurite glasses for application in solar cells, focusing on the cooperative energy transfer mechanism and its efficiency.
研究成果
The study demonstrated an efficient cooperative energy transfer mechanism from Te4+ to Yb3+ in tellurite glasses, with high transfer efficiency (82-100%) for higher Yb3+ concentrations. This suggests potential applications in improving the efficiency of silicon-based solar cells through near-infrared down-conversion.
研究不足
The study is limited to the specific composition of tellurite glasses and the concentrations of Yb3+ ions used. The efficiency of the cooperative energy transfer mechanism may vary with different glass compositions or dopant concentrations.
1:Experimental Design and Method Selection:
The study involved preparing Te4+/Yb3+ co-doped tellurite glasses by the conventional melt-quenching method to investigate their optical characteristics.
2:Sample Selection and Data Sources:
Samples with varying Yb3+ concentrations were prepared and analyzed using UV-Vis-NIR spectrophotometry, Raman spectroscopy, luminescence spectroscopy, and thermal lens spectroscopy.
3:List of Experimental Equipment and Materials:
Equipment included a PerkinElmer 1050 UV-Vis-NIR spectrophotometer, confocal microscopy for Raman spectra, a monochromator coupled with an OPO laser for luminescence spectra, and a thermal lens spectroscopy setup.
4:Experimental Procedures and Operational Workflow:
The glasses were melted, annealed, and polished for measurements. Optical and spectroscopic measurements were conducted to analyze absorption, emission, and thermal effects.
5:Data Analysis Methods:
Data were analyzed to determine the cooperative energy transfer efficiency using lifetime measurements and a new method based on rate equations quantifying non-radiative transitions.
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PerkinElmer 1050 UV-Vis-NIR spectrophotometer
1050
PerkinElmer
Used for obtaining ground state absorption spectra of the glasses.
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spectrometer
MAYA 2000 Pro
Ocean Optics
Used for transmitting the luminescence of the sample.
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tunable Ar+ laser
Innova 308C
Coherent
Used to excite the sample in thermal lens spectroscopy.
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confocal microscopy
BX51-Voyage
Used for obtaining Raman spectra.
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monochromator
iHR-550
Jobin Yvon
Used for obtaining luminescence spectra.
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optical parametric oscillator
OPO
Used as the excitation source for luminescence spectra.
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ICCD detector
Used for detecting the signal in luminescence measurements.
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Xe lamp
Newport
Used as the excitation source for PL and PLE spectra.
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Nd:YAG laser
Used for excitation in time-resolved curves of Te4+ luminescence.
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HeNe laser
Used to probe the thermal lens effect in thermal lens spectroscopy.
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