Area of research
Materials Chemistry · Ceramics and Composites
Research interest
Research focused on Doping and Photoluminescence, with related work in Luminescence, Crystal (programming language), Scintillation. Notable publications include 'High light yield Ce3+-doped dense scintillating glasses', 'Electrical and luminescence properties of Er-doped Bi0.5Na0.5TiO3 ceramics', and 'High energy transfer in Dy3+ /Sm3+co-doped transparent borosilicate glass-ceramics containing novel Na5Y9F32 nanocrystals for w-LEDs applications'.
Dual-modal optical temperature sensing based on Sb3+/Mn2+ co-doped Cs2NaYCl6 double perovskites
Energy transfer and color tunability in high-thermal-stability Dy3+/Tb3+ co-doped K3YF6 transparent oxyfluoride glass ceramics
Tunable luminescence and noncontact temperature sensing of oxyfluoride glass ceramics containing Na(Y1.5Na0.5)F6:Bi3+/Eu3+ nanocrystals
Color-tunable luminescence and temperature sensing in Ce3+/Tb3+ co-doped transparent oxyfluoride glass-ceramics containing Na1.5Y2.5F9 nanocrystals
Bi3+/Mn4+ co-activated phosphors for indoor plant growth and temperature sensing
Preparation and Characterization of Electromagnetic-Induced Rupture Microcapsules for Self-Repairing Mortars
High thermal stability of green-emitting phosphor NaBaB9O15: Tb3+ via energy compensation
Achieving high thermal sensitivity from ratiometric CaGdAlO<sub>4</sub>:Mn<sup>4+</sup>,Tb<sup>3+</sup> thermometers
Enhanced red emission and high thermal stability from Bi3+/Eu3+ co-doped Ba3Y(BO3)3 phosphors for WLEDs application
High energy transfer in Dy3+ /Sm3+co-doped transparent borosilicate glass-ceramics containing novel Na5Y9F32 nanocrystals for w-LEDs applications
Energy transfer and control of color luminescence in Dy3+/Tb3+ co-doped transparent oxyfluorosilicate glass ceramics containing LiYF4 nanocrystals
Enhanced luminescence in Tb3+-doped glass-ceramic scintillators containing LiYF4 nanocrystals
White Light Emission Characteristics of Tb3+/Sm3+ Co-Doped Glass Ceramics Containing YPO4 Nanocrystals
Infrared luminescent properties of Na5Lu9F32 single crystals co-doped Er3+/Yb3+ grown by Bridgman method
Luminescent properties of Ce3+/Tb3+co-doped glass ceramics containing YPO4 nanocrystals for W-LEDs
Infrared spectral properties for α-NaYF4 single crystal of various Er3+doping concentrations
1.8 μm luminescent properties and energy transfer of Yb3+/Tm3+ co-doped α-NaYF4 single crystals
Luminescent properties of Eu3+-doped glass ceramics containing BaGdF5 nanocrystals under NUV-excitation for W-LEDs
Tm 3+ doped α-NaYF 4 single crystal for 2 μm laser application
Luminescent properties of Ce3+-doped transparent oxyfluoride glass ceramics containing BaGdF5 nanocrystals
Enhanced luminescent properties of Sm3+ doped glass ceramics – as potential red–orange phosphor for white light-emitting diodes
Growth and spectral properties of Ho3+ doped α-NaYF4 single crystal
Energy transfer and 2.0 μm emission in Tm 3+ /Ho 3+ co-doped α-NaYF 4 single crystals
Luminescent properties of Tb3+-doped transparent glass ceramics
Tm3+ and Nd3+ singly doped LiYF4 single crystals with 3-5 \mu m mid-infrared luminescence
High light yield Ce3+-doped dense scintillating glasses
Electrical and luminescence properties of Er-doped Bi0.5Na0.5TiO3 ceramics
Optical Spectra and Gain Properties of Ho3+/Pr3+ Co-doped LiYF4 Crystal
Intense 2.7μm emission from Er3+/Tm3+/Pr3+ triply doped LiYF4 single crystal grown by Bridgman method
Synthesis and efficient near-infrared quantum cutting of Pr3+/Yb3+ co-doped LiYF4 single crystals