Area of research
Materials Chemistry · Ceramics and Composites
Research interest
Research interests include Materials science, Ceramic, Luminescence, Light-emitting diode, Color rendering index, and Optoelectronics.
Efficient spectral regulation in Ce:Lu3(Al,Cr)5O12 and Ce:Lu3(Al,Cr)5O12/Ce:Y3Al5O12 transparent ceramics with high color rendering index for high-power white LEDs/LDs
Composite structure Cr:YAG/Ce:YAG and (Ce,Cr):YAG/Ce:YAG transparent ceramics with high color rendering index for white LEDs/LDs
Broadband emission Gd<sub>3</sub>Sc<sub>2</sub>Al<sub>3</sub>O<sub>12</sub>:Ce<sup>3+</sup> transparent ceramics with a high color rendering index for high-power white LEDs/LDs
A novel route to fabricate Yb:YAG ceramic fiber and its optical performance
Weak thermal quenching and tunable luminescence in Ce:Y3(Al,Sc)5O12 transparent ceramics for high power white LEDs/LDs
High recorded color rendering index in single Ce,(Pr,Mn):YAG transparent ceramics for high-power white LEDs/LDs
High quantum efficiency Ce:(Lu,Y)<sub>3</sub>(Al,Sc)<sub>2</sub>Al<sub>3</sub>O<sub>12</sub> transparent ceramics with excellent thermal stability for high-power white LEDs/LDs
Dual effect synergistically triggered Ce:(Y,Tb)3(Al,Mn)5O12 transparent ceramics enabling a high color-rendering index and excellent thermal stability for white LEDs
Protected-annealing regulated defects to improve optical properties and luminescence performance of Ce:YAG transparent ceramics for white LEDs
Luminescence declining behaviors in YAG:Ce transparent ceramics for high power laser lighting
SLA 3D printing of high quality spine shaped β-TCP bioceramics for the hard tissue repair applications
Simple mass-preparation and enhanced thermal performance of Ce: YAG transparent ceramics for high power white LEDs
Fabrication and optical properties of divalent Cu2+ ions incorporated Ce:YAG transparent ceramics for white LEDs
Ammonium sulfate and PEG composite surfactant to promote dispersibility of precursors and Y2O3 powders for transparent ceramics