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首页> 外文期刊>ACS Omega >Mechanically Robust, Flame-Retardant Poly(lactic acid) Biocomposites via Combining Cellulose Nanofibers and Ammonium Polyphosphate
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Mechanically Robust, Flame-Retardant Poly(lactic acid) Biocomposites via Combining Cellulose Nanofibers and Ammonium Polyphosphate

机译:机械坚固,阻燃的聚乳酸生物复合材料,通过组合纤维素纳米纤维和聚磷酸铵

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摘要

Expanding the application range of flame-retardant polymer biocomposites remains a huge challenge for a sustainable society. Despite largely enhanced flame retardancy, until now the resultant poly(lactic acid) (PLA) composites still suffer reduced tensile strength and impact toughness due to improper material design strategies. We, herein, demonstrate the design of a green flame retardant additive (ammonium polyphosphate (APP)@cellulose nanofiber (CNF)) via using the cellulose nanofibers (CNFs) as the green multifunctional additives hybridized with ammonium polyphosphate (APP). The results show that PLA composite with 5 wt % loading of APP@CNF can pass the UL-94 V-0 rating, besides a high limited oxygen index of 27.5%, indicative of a significantly enhanced flame retardancy. Moreover, the 5 wt % of APP@CNF enables the impact strength (σ_(i)) of the PVA matrix to significantly improve from 7.63 to 11.8 kJ/m~(2) (increase by 54%), in addition to a high tensile strength of 50.3 MPa for the resultant flame-retardant PLA composite. The enhanced flame retardancy and mechanical strength performances are attributed to the improved dispersion of APP@CNF and its smaller phase size within the PLA matrix along with their synergistic effect between APP and CNF. This work opens up a facile innovative methodology for the design of high-performance ecofriendly flame retardants and their advanced polymeric composites.
机译:扩大阻燃聚合物生物复合材料的应用范围仍然是可持续社会的巨大挑战。尽管大大提高了阻燃性,但由于材料设计策略不当,到目前为止,所得的聚乳酸(PLA)复合材料仍遭受拉伸强度和冲击韧性的降低。我们在本文中通过使用纤维素纳米纤维(CNF)作为与多磷酸铵(APP)杂交的绿色多功能添加剂,证明了绿色阻燃添加剂(聚磷酸铵(APP)@纤维素纳米纤维(CNF))的设计。结果显示,APP @ CNF的负载量为5 wt%的PLA复合材料,除了27.5%的高极限氧指数外,还可以通过UL-94 V-0等级,表明阻燃性显着提高。此外,APP @ CNF的5 wt%使PVA基质的冲击强度(σ_(i))从7.63显着提高到11.8 kJ / m〜(2)(增加了54%)。所得阻燃PLA复合材料的抗拉强度为50.3 MPa。增强的阻燃性和机械强度性能归因于APP @ CNF的分散性改善以及其在PLA基质中的相尺寸更小,以及它们在APP和CNF之间的协同作用。这项工作为高性能的环保型阻燃剂及其先进的聚合物复合材料的设计提供了一种简便的创新方法。

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