Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Quantum dot, Nanocrystal, Light-emitting diode, Optoelectronics, and Chalcogenide.
Surface Defects Passivation of ZnSeTe/ZnSe/ZnS Quantum Dots by Iodine Ions for Highly Efficient Blue Light‐Emitting Diodes
Controllable Synthesis of Cadmium-Free Blue-Emitting Cu–Ga–Zn–S-Based Nanocrystals for Solution-Processed Quantum-Dot Light-Emitting Diodes
The formation process of five-component Cu–In–Zn–Se–S nanocrystals from ternary Cu–In–S and quaternary Cu–In–Se–S nanocrystals <i>via</i> gradually induced synthesis
Multinary copper-based chalcogenide semiconductor nanocrystals: synthesis and applications in light-emitting diodes and bioimaging
Rational Design and Synthesis of Highly Luminescent Multinary Cu‐In‐Zn‐S Semiconductor Nanocrystals with Tailored Nanostructures
Improved device performance of solution-processed red-colored Cu–In–Zn–S-based quantum dot light-emitting diodes enabled by doping TCTA into the emitting layer
Seeded-mediated growth of ternary Ag–In–S and quaternary Ag–In–Zn–S nanocrystals from binary Ag<sub>2</sub>S seeds and the composition-tunable optical properties
Compositional engineering of multinary Cu–In–Zn-based semiconductor nanocrystals for efficient and solution-processed red-emitting quantum-dot light-emitting diodes
Chloride-Passivated Mg-Doped ZnO Nanoparticles for Improving Performance of Cadmium-Free, Quantum-Dot Light-Emitting Diodes
New Insights into the Formation and Color‐Tunable Optical Properties of Multinary Cu‐In‐Zn‐Based Chalcogenide Semiconductor Nanocrystals
Nanostructure and device architecture engineering for high-performance quantum-dot light-emitting diodes
Solution-processed planar white light-emitting diodes based on cadmium-free Cu-In-Zn-S/ZnS quantum dots and polymer