N0.59 Hudong Road
Ma’anshan, 243000
China
Anhui University of Technology
Optical temperature sensor, Yb, Er:GSAG single crystal, Fluorescence intensity ratio, Dual-mode luminescence, Upconversion and downconversion
Cr3+-doped, Broadband emission, Near-infrared phosphor, Negative thermal expansion, Thermal stability
Mixed garnet crystal, Czochralski method, Thermal property, Spectroscopic property, Yellow Laser
Mixed garnet crystal, Czochralski method, Thermal property, Spectroscopic property, Yellow laser
Yb, Er:NGMW, Optical temperature sensor, Upconversion luminescence, Czochralski method
Composite laser crystal, inhomogeneous broadening, Yb, Er:NGMW, 1.5 μm laser
Upconversion luminescence, Energy back transfer, Yb3+/Er3+ codoping, Phosphor, Crystal
Czochralski method, NaBi(MoO4)2, Optical temperature sensing, Up-conversion luminescence
NaYb(WO4)2:Er3+, Self-activated, Optical temperature sensor, Solid-state reaction method, upconversion luminescence, Downconversion luminescence
High-temperature solid-state method, Double perovskite, Orange-reddish phosphor, Sm3+:Sr2LuNbO6, White LED
Double molybdate, Upconversion luminescence, Fluorescence intensity ratio, Optical thermometry
Narrow-band red emission, Eu3+/Tb3+ co-doping, Energy transfer, Czochralski method, High-temperature solid-state method
MoS2, thermal oxidation, morphology, oxygen-induced CVD, adsorption energy
Upconversion luminescence, Optical temperature sensing, NaBi(MoO4)2 single crystal, Fluorescence intensity ratio, Czochralski method
Upconversion luminescence, optical thermometry, Structure-driven, Double-molybdate, Er3+ ions
Double molybdate crystal, Czochralski method, Optical thermometry, Upconversion luminescence, Fluorescence intensity ratio