Area of research
Spectroscopy · Materials Chemistry
Research interest
Research interests include Materials science, Aerogel, Composite material, Thermal insulation, Carbon nanotube, and Methyltrimethoxysilane.
Upcycling polyethylene terephthalate (PET) plastic waste into multifunctional aerogel-inspired materials
Scalable fabrication of lightweight carbon nanotube aerogel composites for full X-band electromagnetic wave absorption
Addressing the quantitative conversion bottleneck in single-atom catalysis
Recent Progresses in Eco-Friendly Fabrication and Applications of Sustainable Aerogels from Various Waste Materials
Composite aerogels of TEMPO-oxidized pineapple leaf pulp and chitosan for dyes removal
Green recycling of fly ash into heat and sound insulation composite aerogels reinforced by recycled polyethylene terephthalate fibers
A novel aerogel from thermal power plant waste for thermal and acoustic insulation applications
Recycling of waste tire fibers into advanced aerogels for thermal insulation and sound absorption applications
Functionalized pineapple aerogels for ethylene gas adsorption and nickel (II) ion removal applications
Recycling of Pineapple Leaf and Cotton Waste Fibers into Heat-insulating and Flexible Cellulose Aerogel Composites
Advanced aerogels from waste tire fibers for oil spill-cleaning applications
Cellulose-based aerogels from sugarcane bagasse for oil spill-cleaning and heat insulation applications
Heat and sound insulation applications of pineapple aerogels from pineapple waste
Methyltrimethoxysilane-coated recycled polyethylene terephthalate aerogels for oil spill cleaning applications
Advanced Recycled Polyethylene Terephthalate Aerogels from Plastic Waste for Acoustic and Thermal Insulation Applications
Super high-rate fabrication of high-purity carbon nanotube aerogels from floating catalyst method for oil spill cleaning
Cotton aerogels and cotton-cellulose aerogels from environmental waste for oil spillage cleanup
Purification and Dissolution of Carbon Nanotube Fibers Spun from the Floating Catalyst Method
A Na+ Superionic Conductor for Room-Temperature Sodium Batteries
Silicacellulose hybrid aerogels for thermal and acoustic insulation applications
Continuous Carbon Nanotube-Based Fibers and Films for Applications Requiring Enhanced Heat Dissipation
Post-Treatments for Multifunctional Property Enhancement of Carbon Nanotube Fibers from the Floating Catalyst Method
Continuous and scalable fabrication and multifunctional properties of carbon nanotube aerogels from the floating catalyst method
Advanced fabrication and oil absorption properties of super-hydrophobic recycled cellulose aerogels
Super-strong and highly conductive carbon nanotube ribbons from post-treatment methods
High Li ion conductivity in a garnet-type solid electrolyte via unusual site occupation of the doping Ca ions
Formation mechanisms and morphological effects on multi-properties of carbon nanotube fibers and their polyimide aerogel-coated composites
Advanced thermal insulation and absorption properties of recycled cellulose aerogels
Advanced multifunctional graphene aerogel – Poly (methyl methacrylate) composites: Experiments and modeling
Effects of heat treatment on the thermal properties of highly nanoporous graphene aerogels using the infrared microscopy technique