研究目的
Investigating the effect of Bi3+ ion on upconversion-based induced optical heating and temperature sensing characteristics in the Er3+/Yb3+ co-doped La2O3 nano-phosphor.
研究成果
The Er3+/Yb3+/Bi3+ tri-doped La2O3 nano-phosphor exhibits enhanced emission intensity (up to 15 times) and improved optical heating and temperature sensing characteristics with a sensitivity of 71 × 10?4 K?1 at 450 K, making it suitable for photonic devices, optical heaters, and temperature sensors.
研究不足
The study is limited to specific dopant concentrations and the La2O3 host; results may not generalize to other hosts or dopants. The EDS technique is not suitable for quantitative analysis of lighter elements like oxygen. The presence of La(OH)3 phase due to hygroscopic nature could affect emission intensity. Optical heating and sensing are dependent on pump power and temperature ranges used.
1:Experimental Design and Method Selection:
The study synthesized Er3+/Yb3+/xBi3+ tri-doped La2O3 nano-phosphor samples with x = 0, 5, 10, and 15 mol% using a solution combustion method. Urea was used as fuel, and materials were dissolved in nitric acid, stirred, and combusted at 600°C, followed by annealing at 1300°C.
2:Sample Selection and Data Sources:
Samples were prepared with fixed concentrations of Er3+ (
3:7 mol%) and Yb3+ (0 mol%), varying Bi3+ concentrations. High-purity oxides (99%) were used. List of Experimental Equipment and Materials:
Equipment included X-ray diffractometer (MiniFlex 600, Rigaku), SEM (Zeiss Evo 18 Research), EDS, FTIR spectrometer (Perkin Elmer IR spectrometer), monochromator (iHR320, Horiba Jobin Yvon) with PMT, and diode laser for 976 nm excitation. Materials included La2O3, Er2O3, Yb2O3, Bi2O3, urea, nitric acid, and de-ionized water.
4:Experimental Procedures and Operational Workflow:
Synthesis involved dissolving oxides in acid, adding urea, stirring to form gel, combustion, grinding, and annealing. Characterization included XRD for structural analysis, SEM for morphology, EDS for elemental analysis, FTIR for molecular verification, absorption spectra, and upconversion emission measurements at various pump powers and temperatures.
5:Data Analysis Methods:
Rietveld refinement for XRD data, Williamson-Hall method for crystallite size and strain, Wood and Tauc formula for optical band gap, and fluorescence intensity ratio (FIR) analysis for optical heating and temperature sensing.
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