Area of research
Materials Chemistry · Inorganic Chemistry
Research interest
Research focused on Phosphor and Nanocrystalline material, with related work in Kinetics, Luminescence, Orthorhombic crystal system. Notable publications include 'Thermal degradation kinetics study of curcumin with nonlinear methods', 'Nanocrystalline LaFeO3 preparation and thermal process of precursor', and 'Grinding kinetics of waste glass powder and its composite effect as pozzolanic admixture in cement concrete'.
Substrate cation substitution effectively enhances luminescence and moisture resistance of K2NaScF6:Mn4+ phosphor
Room temperature synthesis of graphene quantum dots coated KGdF4: Eu3+, Sm3+ nanophosphors with negative luminescence thermal bursts
Li+ co-doping and hydrophobic surface modification enhance the luminescence and moisture resistance of Mn4+-doped fluoride phosphors
Enhanced luminescence and negative thermal quenching in Bi3+/Tb3+ Co-doped KYF4 green phosphor
A Rapid Method for Preparing Transient Thermal Expansion Cracking Agent and Its Thermal Decomposition Kinetics Analysis
Preparation of red phosphor K2SiF6:Mn4+ with high water-resistant and negative thermal quenching effect induced by citric acid-passivation
Fast response Sc3+-sensitized K2NbF7:Mn4+ phosphors with high luminescence intensity and moisture resistance selected by DFT calculations
In Situ Formation of Ultrathin Composite Shell with Strong Water Resistance on the Surface of K<sub>2</sub>SiF<sub>6</sub>:Mn<sup>4+</sup> via NaClO Treatment
Interlayer synergistic strategy to enhance the water resistance of Mn4+-doped fluoride phosphors under extreme conditions
Striking antithermal quenching and waterproofness of Mn4+-doped fluoride phosphors induced by synergy of double coating and single passivation
H2O2-free synthesis of Na2SiF6:Mn4+,K+@Na2SiF6 with significant improvement in water resistance, luminescence thermal stability, and luminescence induced by codoping with K+ and coating with Na2SiF6
Design of Eu<sup>3+</sup>-Doped Fluoride Phosphor with Zero Thermal Quenching Property Based on Density Functional Theory
Electronic defect engineering of double-doped β-KYF4:Eu3+,Bi3+ red phosphors: Negative thermal quenching and applications for high-efficiency white light-emitting diodes
Boosting the red emission and luminescent thermostability of GdPO4:Eu3+ phosphors by coating with graphitic carbon nitride
Application of machine learning based high-throughput analysis for predicting the degradation performance of TiO2 doped photocatalysts in air pollutants
Rapid synthesis of environmentally friendly submicron K2SiF6:Mn4+ phosphors: Advancing micro-LED technology
Protonated organic cations enhance the luminescence performance and thermal stability of fluoride red phosphor K2TiF6:Mn4+
Ion exchange-promoted surface reduction strategy: For improving the water-resistance of K2SiF6:Mn4+ red phosphors
Enhancing quantum efficiency and thermal stability in Gd2SrAl2O7: Mn4+, Bi3+, Na+ far-red emitting phosphor by energy transfer and cation substitution strategy for indoor plant growth LED lighting
Luminescence Enhancement of K<sub>2</sub>LiAlF<sub>6</sub>:Mn<sup>4+</sup> Phosphors by Zn<sup>2+</sup>-Mediated Charge Compensation for Fast-Response Backlighting Applications
Mn-Activated Fluoride Phosphors Modified by Surfactant with Outstanding Water Resistance and Luminescent Thermal Properties
Rapidly constructed water-resistant composite shell of fluoride red phosphors K2GeF6:Mn4+ by in-situ passivation
Enhancement of waterproofness and luminescence thermostability of K2SiF6:Mn4+,Li+ by coating with GQDs and surface passivation
Application of chelation effect in improving the triple properties of K2SiF6Mn4+ phosphors through composite modification
Intrinsic imperfect and zero thermal quenching property for a novel β-NaYF4:Eu3+,Tb3+ red-light emitting phosphor for NUV LEDs
Synthesis, luminescence properties, and thermal decomposition kinetics of NH4GdF4:Eu3+ with an intense negative thermal quenching effect
Improvement of the luminescent thermal stability and water resistance of K2SiF6:Mn4+ by surface passivation
An organic–inorganic hybrid K<sub>2</sub>TiF<sub>6</sub> : Mn<sup>4+</sup> red-emitting phosphor with remarkable improvement of emission and luminescent thermal stability
Enhancement of the luminescent thermal stability and water resistance of K2TiF6:Mn4+ by organic inorganic hybrid matrix and surface passivation
High Water Resistance and Luminescent Thermal Stability of Li<sub><i>y</i></sub>Na<sub>(2–<i>y</i>)</sub>SiF<sub>6</sub>: Mn<sup>4+</sup> Red-Emitting Phosphor Induced by Codoping of Li<sup>+</sup>