研究目的
To develop and characterize high thermal conductivity/high thermal shock-resistant bulk Ce-doped Al2O3 as a new phosphor converting capping layer for high-powered/high-brightness solid-state white lighting (SSWL) and to study the effect of crystallinity on the Ce photoluminescent (PL) emission in Ce:YAG ceramics.
研究成果
Bulk Ce:Al2O3 ceramic phosphors exhibit broadband emission suitable for high-power/high-brightness SSWL devices. The unique PL properties and superior thermal–mechanical properties of Ce:Al2O3, in conjunction with Ce:YAG, offer improved performance for laser-driven solid-state lighting. The study highlights the potential of these materials in overcoming efficiency droop and thermal management challenges in high-power lighting applications.
研究不足
The study is limited by the inability to produce microstructures with grain sizes small enough to fully accommodate dopant concentrations required for PL applications without quenching effects. The precise location of the 4f ground state in relation to the valence band in Ce:Al2O3 remains undetermined due to experimental setup limitations.
1:Experimental Design and Method Selection:
The study employed a simultaneous solid-state reactive current activated pressure-assisted densification (CAPAD) approach to produce bulk, dense Ce:Al2O3 ceramics. Ce:YAG ceramics were synthesized using high-pressure CAPAD at moderate temperatures to obtain varying crystallinity.
2:Sample Selection and Data Sources:
Ultra-high purity a-Al2O3 submicron powder and CeO2 nanopowder were used for Ce:Al2O
3:Ce:
YAG powders were synthesized through a solution polymerization–based route, organic/inorganic steric entrapment method.
4:List of Experimental Equipment and Materials:
CAPAD apparatus, graphite tooling, tungsten deuterium lamp with monochromators, Advanced Research Systems closed-cycle helium cryostat, Horiba-PTI model 3558 spectrofluorometer, Zeiss Sigma 500 SEM, Phillips X’Pert diffractometer.
5:Experimental Procedures and Operational Workflow:
Powders were mixed, milled, dried, and consolidated under high pressure and temperature. PL spectra were collected from 295 to 4 K.
6:Data Analysis Methods:
XRD spectra were compared with published standards. PL spectra were analyzed to understand crystal field effects and thermal broadening.
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