Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research focused on Phosphor and Calcination, with related work in Chromaticity, Photoluminescence, Activation energy. Notable publications include 'Near-UV light excited Eu3+, Tb3+, Bi3+ co-doped LaPO4 phosphors: Synthesis and enhancement of red emission for WLEDs', 'Facile synthesis of hydrotalcite and its thermal decomposition kinetics mechanism study with masterplots method', and 'Na+ induced electric-dipole dominated transition (5D0→7F2) of Eu3+ emission in AMgPO4:Eu3+ (A=Li+, Na+, K+) phosphors'.
Enhanced photoluminescence and energy transfer in the novel red emitting phosphors SrZn2(PO4)2:Eu3+, Tb3+, Li+
Strain-Induced Enhancement of Eu3+ Emission in Red Phosphor NaMgPO4:Eu3+, Al3+
Near-UV light excited Eu3+, Tb3+, Bi3+ co-doped LaPO4 phosphors: Synthesis and enhancement of red emission for WLEDs
Na+ induced electric-dipole dominated transition (5D0→7F2) of Eu3+ emission in AMgPO4:Eu3+ (A=Li+, Na+, K+) phosphors
The dual charge compensation effect of Na+ ions on the luminescence behavior of red phosphor NaMgPO4:Eu3+
LaPO4: Ce, Tb, Yb phosphor—synthesis and kinetics study for thermal process of precursor by Vyazovkin, OFW, KAS, Starink, and Mastplosts methods
Synthesis of a new phosphor (LaPO4:Ce, Li, Mn) and kinetics study for thermal process of its precursor
Facile synthesis of hydrotalcite and its thermal decomposition kinetics mechanism study with masterplots method
A novel orange emissive phosphor LaPO4:Bi, Sm with sharp and splitting emission peaks of Sm3+
Large-scale synthesis of aluminium borate nanowires by a simple molten salt method