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合成一种含磷的 L-乳酸基阻燃增塑剂,用于同时提高聚乳酸的柔韧性和阻燃性。

Synthesis of a phosphorus-containing L-lactic acid-based flame-retardant plasticizer for simultaneously enhancing flexibility and flame retardancy of poly(lactic acid).

机构信息

School of Materials Science and Engineering, Changzhou University, Changzhou 213164, China.

School of Safety Science and Engineering, Changzhou University, Changzhou 213164, China.

出版信息

Int J Biol Macromol. 2024 Nov;279(Pt 3):135420. doi: 10.1016/j.ijbiomac.2024.135420. Epub 2024 Sep 7.

Abstract

This work provides a straightforward strategy for synthesizing efficient bio-based flame-retardant plasticizers, offering promising prospects for flame-retardant flexible materials. Poly(lactic acid) (PLA) has garnered significant attention as an environmentally friendly polymer among numerous biodegradable materials. However, its high flammability and brittleness severely hinder its application in the field of electronics and electrical devices. To address these challenges, a bio-based flame-retardant plasticizer (EPDL) was designed and synthesized using renewable L-lactic acid, which significantly enhances the flexibility and flame retardancy of PLA. Incorporating 40 phr EPDL resulted in PLA achieving UL94 V-0 grade and a limiting oxygen index of 34.3 %, demonstrating excellent flame-retardant properties. Meanwhile, the peak of heat release rate and total heat release of PLA/EPDL blends exhibited a marked reduction by 23.1 % and 34.1 % compared to that of pristine PLA, respectively. The flame-retardant action mode of EPDL is the combination of gas phase and condensed phase action. Additionally, the introduction of 40 phr EPDL significantly enhanced the ductility of PLA, resulting in a substantial rise in the elongation at break of the PLA/EPDL to 181.8 %, which is approximately 52 times higher than neat PLA. Intriguingly, the crystallization performance of PLA was enhanced by the presence of EPDL.

摘要

这项工作提供了一种合成高效生物基阻燃增塑剂的直接策略,为阻燃柔性材料提供了有前景的前景。聚乳酸(PLA)作为众多可生物降解材料中一种环保聚合物,受到了极大的关注。然而,其高可燃性和脆性严重限制了其在电子和电器设备领域的应用。为了解决这些挑战,设计并合成了一种基于可再生 L-乳酸的生物基阻燃增塑剂(EPDL),显著提高了 PLA 的柔韧性和阻燃性。添加 40phr EPDL 可使 PLA 达到 UL94 V-0 等级和 34.3%的极限氧指数,表现出优异的阻燃性能。同时,与纯 PLA 相比,PLA/EPDL 共混物的热释放率峰值和总热释放量分别降低了 23.1%和 34.1%。EPDL 的阻燃作用模式是气相和凝聚相作用的结合。此外,引入 40phr EPDL 可显著提高 PLA 的韧性,使 PLA/EPDL 的断裂伸长率提高到 181.8%,约为纯 PLA 的 52 倍。有趣的是,EPDL 的存在增强了 PLA 的结晶性能。

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