Area of research
Materials Chemistry · Mechanics of Materials
Research interest
Research focused on Activation energy and Calcination, with related work in Phosphor, Thermal decomposition, Kinetics. 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 'Nonisothermal Kinetics Study with Isoconversional Procedure and DAEM: LiCoPO 4 Synthesized from Thermal Decomposition of the Precursor'.
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
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+
Synthesis of α-Al2O3 platelets and kinetics study for thermal decomposition of its precursor in molten salt
Nonisothermal Kinetics Study with Isoconversional Procedure and DAEM: LiCoPO<sub>4</sub> Synthesized from Thermal Decomposition of the Precursor
Nonisothermal kinetics study with advanced isoconversional procedure and DAEM
Non-isothermal kinetics study with isoconversional procedure and DAEM: Thermal decomposition of LaPO4:Ce,Tb·0.5H2O