Area of research
Materials Chemistry · Biomedical Engineering
Research interest
Research interests include Materials science, Afterglow, Phosphorescence, Carbon fibers, Nanotechnology, and Mesoporous silica.
Time-Dependent Room-Temperature Afterglow of Carbon Dots Constructed by Trap-Induced Multiemission Centers
Mesoporous collapsing encapsulated carbon dots: Direct evidence for the effect of multiple-confined interactions of silica on efficient long-lived phosphorescence
Exploration and Design of Carbon Dot-Based Long Afterglow Materials Using Active Machine Learning and Quantum Chemical Simulations
Multiple confinement-limited activation and defect effect co-triggered the ultra-long lifetime of carbon dots
Mesoporous Collapsing Encapsulated Carbon Dots: Direct Evidence for the Effect of Multiple-Confined Interactions of Silica on Efficient Long-Lived Phosphorescence
Calcination temperature tuning of RTP and TADF with wide range of emission color from carbon dots confined in Al2O3
Multicolor Afterglow from Carbon Dots: Preparation and Mechanism
Energy Transfer Mediated Enhancement of Room‐Temperature Phosphorescence of Carbon Dots Embedded in Matrixes
Control of surface composition and microstructure of nano super-hydrophilic TiO2-CuOy coatings through reactive sputtering to improve antibacterial ability, corrosion resistance, and biocompatibility
Temperature-responsive conversion of thermally activated delayed fluorescence and room-temperature phosphorescence of carbon dots in silica