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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Core-Shell Bioderived Flame Retardants Based on Chitosan/Alginate Coated Ammonia Polyphosphate for Enhancing Flame Retardancy of Polylactic Acid
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Core-Shell Bioderived Flame Retardants Based on Chitosan/Alginate Coated Ammonia Polyphosphate for Enhancing Flame Retardancy of Polylactic Acid

机译:基于壳聚糖/藻酸盐涂覆的氨水磷酸核 - 壳生物化的阻燃剂,用于增强聚乳酸的阻燃性

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Bioderived flame retardants represent one class of the most promising sustainable additives for creating flame retardant polylactic acid (PLA) because of their marginal impact on the biodegradability of PLA. Ammonium polyphosphate (APP) has demonstrated high flame-retardant effectiveness in PLA but its flame-retardant efficiency remains unsatisfactory even if after modifications. Herein, we report the facile fabrication of core-shell bioderived flame retardants by using APP as the core, and the chitosan (CS)/alginate (AA) bilayer as the shell through self-assembly in aqueous solution. The resultant core-shell flame retardant, APP@CS@AA-nBL (where "BL" is a CS&AA bilayer and "n" denotes 1-3 BL), can endow PLA with improved flame retardancy without negatively affecting the thermal properties. The PLA containing 10 wt % APP@CS@AA-3BL shows the highest LOI value (30.6%) and achieves a UL94 V-0 rating in the vertical burning test. Meanwhile, the cone calorimetry results demonstrate that the peak of the heat release rate and total heat release are respectively decreased by 23% and 11% relative to the PLA bulk. Such enhanced flame retardancy is mainly due to the excellent char-forming capability of APP@CS@AA. Moreover, the inclusion of 10 wt % APP@CS@AA-3BL gives rise to similar to 23% increase in the impact strength of PLA possibly because of their interfacial hydrogen-bonding interactions. This work provides a facile and green strategy for preparing highly effective bioderived flame retardants for PLA and thus is expected to expand the practical applications in industry.
机译:生物化的阻燃剂代表了一种用于产生阻燃聚乳酸(PLA)的最有前途的可持续添加剂的一类,因为它们对PLA的生物降解性的边际影响。多磷酸铵(APP)在PLA中表现出高阻燃效果,即使在修饰后,其阻燃效率也仍然不令人满意。在此,我们通过使用应用作为核心作为核心和壳聚糖(Cs)/藻酸盐(Aa)双层作为壳通过在水溶液中的自组装来报告核心 - 壳生物化阻燃剂的容量制备。所得到的核心壳阻燃剂,APP @ CS @ AA-NBL(其中“BL”是CS&AA双层和“N”表示1-3BL),可以赋予PLA改善的阻燃性,而不会对热性能产生负面影响。包含10wt%App @ CS @ AA-3BL的PLA显示了最高的LOI值(30.6%),并在垂直燃烧测试中实现了UL94 V-0等级。同时,锥形量热法结果表明,相对于PLA块状,热释放率和总热释放的峰值分别降低23%和11%。这种增强的阻燃性主要是由于APP @ CS @ AA的出色的炭状能力。此外,包含10wt%APP @ CS @ AA-3BL可能导致PLA的冲击强度增加23%,因为它们的界面氢键相互作用。这项工作为准备高效的PLA制备高效的生物化阻燃剂提供了一种容易和绿色的策略,因此预计将扩大工业中的实际应用。

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