Area of research
Materials Chemistry · Radiology, Nuclear Medicine and Imaging
Research interest
Research interests include Carborane, Chemistry, Materials science, Tetraphenylethylene, Microstructure, and Quantum yield.
Enhanced pseudocapacitive performance of a Pb-based MOF/FCNT composite for high-stability supercapacitor applications: a step ahead towards energy storage
Effect of Y on the Microstructures and Heat-Resistant Property of ZL109 Alloys
The effects of in-situ ZrB2 nanoparticles and La on the microstructure and mechanical properties of the Al-5.4Cu-0.7Mg-0.6Ag alloy
Stable and reliable PEG/TiO2 phase change composite with enhanced thermal conductivity based on a facile sol-gel method without deionized water
Main-Chain Carborane-Embedded Polyethylene
Recent progress of dual-atom catalysts on zinc-air batteries
Effect of La on the Microstructures and Mechanical Properties of Al-5.4Cu-0.7Mg-0.6Ag Alloys
Bowl-Shaped Bispyrrole-Fused Perylene-diimide and Its Anions
Side-chain <i>meta</i>[6]cycloparaphenylene-based nanoring-containing polymers
Boron‐Cluster Embedded Necklace‐Shaped Nanohoops
Massive Open Online Course Versus Flipped Instruction: Impacts on Foreign Language Speaking Anxiety, Foreign Language Learning Motivation, and Learning Attitude
The Mechanochemistry of Carboranes
Color-tuning and manipulation of the aggregation-induced emission efficiency of <i>o</i>-carborane-tetraphenylethylene dyads through substituted <i>o</i>-carboranes
The Mechanochemistry of Carboranes
Heterobimetallic block copolymers with a combined main-chain/side-chain topology
Heterobimetallic polymers with pendant metallocenes: Correlating metallopolymer structures with properties
Synthesis and photophysical properties of a new tetraphenylethylene-<i>o</i>-carborane-based star-shaped molecule
Color‐tunable and Highly Emissive Solid Materials Constructed from Tetraphenylethylene‐<i>o‐</i>carborane‐based Building Blocks: Synthesis, Aggregation‐induced emission, and Photophysics
Configuration-controllable synthesis of <i>Z</i>/<i>E</i> isomers based on <i>o</i>-carborane-functionalized tetraphenylethene