Abstract
In this work, a novel type of phosphorus containing hyperbranched polysiloxane (P-HBPSi) was synthesized by sol–gel method, and then utilized to functionalize graphene oxide (P-HBPSi@GO). The P-HBPSi@GO hybrids were mixed with TPU by melt compounding. The SEM observation revealed that the P-HBPSi@GO dispersed homogeneously in the TPU matrix with good compatibility. The TPU/[email protected] maintained high ductility with elongation at break of 1750.8%. The peak heat release rate and total heat release of TPU/[email protected] were reduced by 63.5% and 20.9%, respectively. In addition, the peak smoke production rate and total smoke production of TPU nanocomposites were also reduced dramatically by 58.3% and 36.4%, respectively. The production of phosphorus free radical scavengers in the gas phase and the barrier effects of GO nanosheets, catalytic charring and the unique Si-O-Si framework of P-HBPSi flame retardant in the condensed phase contributed to the outstanding flame retardancy and toxic gas suppression of TPU/P-HBPSi@GO nanocomposites.
| Original language | English |
|---|---|
| Article number | 106614 |
| Journal | Composites Part A: Applied Science and Manufacturing |
| Volume | 150 |
| Online published | 21 Aug 2021 |
| DOIs | |
| Publication status | Published - Nov 2021 |
Research Keywords
- Flame retardant
- Graphene oxide
- Hyperbranched polysiloxane
- Thermoplastics polyurethane
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