研究目的
To discover and develop highly efficient cyan-green-emitting vanadate phosphors for full-spectrum white light-emitting diodes (WLEDs) to compensate the spectral gap in the 480?520 nm region.
研究成果
The developed cyan-green-emitting Rb3RV2O8 (R = Y, Lu) phosphors exhibit high internal quantum efficiencies and controllable emission color tuning through VO4 3? → Eu3+ energy transfer. These phosphors demonstrate potential applications in n-UV-pumped full-spectrum pc-WLEDs, achieving high color-rendering index and low correlated color temperature.
研究不足
The study focuses on the development of cyan-green-emitting vanadate phosphors and their application in WLEDs. Limitations include the need for further improvement in the relative sensitivity for optical temperature sensors and the exploration of other potential applications beyond WLEDs.
1:Experimental Design and Method Selection
High-temperature solid-state reaction process was used to synthesize Rb3RV2O8 (R = Y, Lu) and Rb3Lu1?xV2O8:xEu3+ (x = 0?0.20) samples. The methodology included theoretical models and detailed procedures for the synthesis.
2:Sample Selection and Data Sources
Stoichiometric mixtures of Rb2CO3, Y2O3, Lu2O3, NH4VO3, and Eu2O3 were used. Samples were sintered at 1023 K for 20 h in an air atmosphere.
3:List of Experimental Equipment and Materials
X-ray diffraction (XRD) using a Model D8 Avance X-ray diffractometer, UV-vis absorption and diffuse reflectance spectra measured on a Hitachi Model U-4100 UV-vis-NIR spectrophotometer, Raman spectra recorded on a Model T64000 Raman spectrometer, PL and PLE spectra measured by a Model FLSP-920 fluorescence spectrophotometer.
4:Experimental Procedures and Operational Workflow
Mixed materials were grounded, sintered, and quenched to room temperature. LED devices were fabricated by combining 370 nm InGaN chips with commercial phosphors and the as-prepared vanadate phosphors.
5:Data Analysis Methods
Rietveld refinement analysis of XRD data, Kubelka?Munk absorption function for determining optical band gap, Arrhenius equation for activation energy calculation.
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