Wang Xiaodong, Hu Weizhao, Hu Yuan
State Key Laboratory of Fire Science, University of Science and Technology of China, Hefei, China.
School of Chemistry and Material Engineering, Chaohu University, Chaohu, China.
Front Chem. 2020 Sep 29;8:587474. doi: 10.3389/fchem.2020.587474. eCollection 2020.
In this study, h-BN@PDA@TiO hybrid nanoparticles were prepared and used as functional fillers to prepare PVA nanocomposites, and the effects of hybrid particles on PVA thermal conductivity and flame retardant properties were studied. The results showed that hybrid particles could significantly improve the thermal conductivity and flame retardant performance of PVA composites, and effectively inhibit the release of toxic gases such as combustible pyrolysis products and CO, which enhanced the fire safety of PVA composites. When the addition amount of hybrid particles is 5 wt%, the thermal conductivity of PVA composites is 239.1% higher than that of the pure PVA and the corresponding temperature of PVA composites with a mass loss of 5 wt% was 16.2°C higher than that of the pure PVA. This is due to the barrier effect of h-BN and the protective effect of dense carbon layer catalyzed by TiO.
在本研究中,制备了h-BN@PDA@TiO杂化纳米粒子并将其用作功能填料来制备PVA纳米复合材料,研究了杂化粒子对PVA热导率和阻燃性能的影响。结果表明,杂化粒子能够显著提高PVA复合材料的热导率和阻燃性能,并有效抑制可燃热解产物和CO等有毒气体的释放,增强了PVA复合材料的火灾安全性。当杂化粒子的添加量为5 wt%时,PVA复合材料的热导率比纯PVA高239.1%,且质量损失5 wt%时PVA复合材料的相应温度比纯PVA高16.2°C。这是由于h-BN的阻隔作用以及TiO催化形成的致密碳层的保护作用。