DST-CSIR National Centre for Nanostructured Materials, Council for Scientific and Industrial Research, Pretoria 0001, South Africa.
Department of Applied Chemistry, University of Johannesburg, Doornfontein 2028, Johannesburg, South Africa.
Molecules. 2018 Oct 16;23(10):2648. doi: 10.3390/molecules23102648.
Polylactide (PLA) is one of the most widely used organic bio-degradable polymers. However, it has poor flame retardancy characteristics. To address this disadvantage, we performed melt-blending of PLA with intumescent flame retardants (IFRs; melamine phosphate and pentaerythritol) in the presence of organically modified montmorillonite (OMMT), which resulted in nanobiocomposites with excellent intumescent char formation and improved flame retardant characteristics. Triphenyl benzyl phosphonium (OMMT-1)- and tributyl hexadecyl phosphonium (OMMT-2)-modified MMTs were used in this study. Thermogravimetric analysis in combination with Fourier transform infrared spectroscopy showed that these nanocomposites release a smaller amount of toxic gases during thermal degradation than unmodified PLA. Melt-rheological behaviors supported the conclusions drawn from the cone calorimeter data and char structure of the various nanobiocomposites. Moreover, the characteristic of the surfactant used for the modification of MMT played a crucial role in controlling the fire properties of the composites. For example, the nanocomposite containing 5 wt.% OMMT-1 showed significantly improved fire properties with a 47% and 68% decrease in peak heat and total heat release rates, respectively, as compared with those of unmodified PLA. In summary, melt-blending of PLA, IFR, and OMMT has potential in the development of high-performance PLA-based sustainable materials.
聚乳酸(PLA)是最广泛使用的有机生物可降解聚合物之一。然而,它的阻燃性能较差。为了解决这个缺点,我们在有机改性蒙脱土(OMMT)的存在下,将 PLA 与膨胀型阻燃剂(IFR;磷酸氰胺和季戊四醇)进行熔融共混,得到具有优异膨胀炭层形成和改善阻燃性能的纳米生物复合材料。本研究使用了三苯基苄基膦(OMMT-1)和三丁基十六烷基膦(OMMT-2)改性的蒙脱土。热重分析结合傅里叶变换红外光谱表明,与未改性 PLA 相比,这些纳米复合材料在热降解过程中释放出的有毒气体较少。熔体流变行为支持从锥形量热仪数据和各种纳米生物复合材料的炭结构得出的结论。此外,用于蒙脱土改性的表面活性剂的特性在控制复合材料的防火性能方面起着至关重要的作用。例如,与未改性 PLA 相比,含有 5wt.% OMMT-1 的纳米复合材料的峰值热释放率和总热释放率分别显著降低了 47%和 68%,显示出明显改善的防火性能。总之,PLA、IFR 和 OMMT 的熔融共混在开发高性能 PLA 基可持续材料方面具有潜力。