Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research focused on Phosphor and Photoluminescence, with related work in Light-emitting diode, Luminescence, Doping. Notable publications include 'Double perovskite Ba2LaNbO6:Mn4+,Yb3+ phosphors: Potential application to plant-cultivation LEDs', 'A novel double perovskite La2ZnTiO6:Eu3+ red phosphor for solid-state lighting: Synthesis and optimum luminescence', and 'Optical temperature sensor with superior sensitivity based on Ca2LaSbO6: Mn4+, Eu3+ phosphor'.
Optical temperature sensor with superior sensitivity based on Ca2LaSbO6: Mn4+, Eu3+ phosphor
Synthesis and luminescence properties of double perovskite Bi3+/Mn4+ co-doped Ca2GdTaO6 phosphor
Luminescent properties of Mn4+-doped LaTiSbO6 deep-red-emitting phosphor for plant growth LEDs
Mn4+-doped La(CaZr)0.5O3 phosphors for plant grow LEDs: Ab initio site occupy and photoluminescence properties
Secondary reduction of graphene improves the photoelectric properties of TiO2@rGO composites
Double perovskite Ba2LaNbO6:Mn4+,Yb3+ phosphors: Potential application to plant-cultivation LEDs
Luminescence and Energy Transfer of Color-Tunable BaMg2Al6Si9O30: Ce3+, Tb3+ Phosphor
A novel double perovskite La2ZnTiO6:Eu3+ red phosphor for solid-state lighting: Synthesis and optimum luminescence
Photoluminescence properties of KBaY(BO3)2:Eu3+/Bi3+ phosphors excited by ultraviolet and blue light
Novel single-phase white-emitting phosphor Sr6Gd2Na2(PO4)6F2:Eu2+,Mn2+: band gap, luminescence, and energy transfer
A Single-Composition Trichromatic White-Light-Emitting Phosphor Based on Sr8ZnY(PO4)7 Coactivated with Ce3+, Tb3+, and Mn2+
Dual emission of Ce<sup>3</sup><sup>+</sup>,Mn<sup>2</sup><sup>+</sup>‐coactivated Ca<sub>3</sub>YNa(PO<sub>4</sub>)<sub>3</sub>F via energy transfer: a single component white/yellow‐emitting phosphor