- Assoc. Prof. Dr. Kai Wu
- Sichuan University
- Welcome to kaiwu.polymer.cn
- Visits:127364
Links
Contact Info.
- Address:四川省成都市一環路南一段24號四川大學望江校區
- Zip:610065
- Tel:028-85460953
- Fax:
- Email:[email protected]
Current Location :> Home > PUBLICATIONS
- List of Publications
- List of books
- PUBLICATIONS
- PATENT
- BOOKS
- Highly thermo-conductive but electrically insulating filament via a volume-confinement self-assembled strategy for t...
- Highly Thermoconductive, Thermostable, and SuperFlexible Film by Engineering 1D Rigid Rod-Like Aramid Nanofiber/2D B...
- Is filler orientation always good for thermal management performance: A visualized study from experimental results t...
- Metal-Level Robust, Folding Endurance, and Highly TemperatureStable MXene-Based Film with Engineered Aramid Nanofibe...
- Addressing the challenge of fabricating a high content regenerated cellulose/nanomaterial composite: the magical eff...
- A self-reinforcing and self-healing elastomer with high strength, unprecedented toughness and room-temperature repar...
- A Multidirectionally Thermoconductive Phase Change Material Enables High and Durable Electricity via Real-Environmen...
- A Dual-Crosslinked and Anisotropic Regenerated Cellulose/Boron Nitride Nanosheets Film With High Thermal Conductivit...
- Green Production of Regenerated Cellulose/Boron Nitride Nanosheet Textiles for Static and Dynamic Personal Cooling
- Preparation of a thermally conductive biodegradable cellulose nanofiber/hydroxylated boron nitride nanosheet film: t...
- Design and Preparation of a Unique Segregated Double Network with Excellent Thermal Conductive Property
- Constructing conductive multi-walled carbon nanotubes network inside hexagonal boron nitride network in polymer comp...
- Achieving a Collapsible, Strong, and Highly Thermally Conductive Film Based on Oriented Functionalized Boron Nitride...
- Largely enhanced thermal and electrical conductivity via constructing double percolated filler network in polypropyl...
- Surface modification of boron nitride by reduced graphene oxide for preparation of dielectric material with enhanced...
- Largely enhanced electrical properties of polymer composites via the combined effect of volume exclusion and synergy