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Bioinspired Lamellar Barriers for Significantly Improving the Flame-Retardant Properties of Nanocellulose Composites

机译:Bioinspired的层状屏障,用于显着提高纳米纤维素复合材料的阻燃性能

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The traditional addition of phosphorus-containing flame retardants could improve the flame retardance of polymeric materials, but it usually deteriorates the mechanical strength and thermal stability. Herein, we report an interlayer-confined synthesis of multilayer zirconium phosphate-reduced graphene oxide (ZrP-RGO) nanoplates, which were incorporated into cellulose nanofibers to fabricate the hierarchical nanocellulose composites through a structural inspiration of nacre. The lamellar barriers consisting of highly aligned ZrP-RGO nanoplates along a planar orientation contribute to suppressing heat and mass transfer between the flame zone and underlying matrix, which gives rise to 75.1%, 71.4%, and 54.6% reductions in the peak heat release rate, peak smoke release rate, and peak CO production rate of nanocellulose composites, respectively. Moreover, the hierarchical nanocellulose composites simultaneously achieve better thermal stability, mechanical strength, and toughness compared to pure cellulose nanofibers. The formation of bioinspired lamellar barriers provides an innovative idea to significantly improve the flame retardance of nanocellulose composites, as well as thermal stability and mechanical properties.
机译:传统的含磷阻燃剂添加可以改善聚合物材料的阻燃性,但通常会劣化机械强度和热稳定性。在此,我们报告了一种层间局限性合成的多层磷酸锆的氧化烯氧化物(Zrp-RGO)纳米层,其掺入纤维素纳米纤维中以通过珍珠菌的结构启发来制造分层纳米纤维素复合材料。沿着平面取向组成的板状屏障沿着平面取向组成的型ZrP-rgo纳米层板有助于抑制火焰区和下面基质之间的热量和质量传递,这导致峰值热释放率的75.1%,71.4%和54.6%的降低,峰值释放率和纳米纤维素复合材料的峰值CO生产率分别。此外,与纯纤维素纳米纤维相比,分层纳米纤维素复合材料同时达到更好的热稳定性,机械强度和韧性。 BioInspired Ladellar屏障的形成提供了一种创新的思想,以显着提高纳米纤维素复合材料的阻燃性,以及热稳定性和机械性能。

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