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一种具有优异成炭能力的新型氮磷协同纳米纤维素基阻燃剂的简便制备方法,用于增强PA66的抗熔滴性能。

Accessible preparation of a novel nitrogen‑phosphorus synergetic nanocellulose-based flame retardant with excellent char-forming ability for enhancing the anti-melting droplet property of PA66.

作者信息

Ren Xiedan, Long Shuheng, Chen Xuefei, Wang Xiaohua, Yang Xiaohua, Yu Houyong

机构信息

College of Textile Science and Engineering (International Institute of Silk Institute), Zhejiang Sci-Tech University, Hangzhou 310018, China.

College of Textile Science and Engineering (International Institute of Silk Institute), Zhejiang Sci-Tech University, Hangzhou 310018, China.

出版信息

Int J Biol Macromol. 2025 Feb;289:138951. doi: 10.1016/j.ijbiomac.2024.138951. Epub 2024 Dec 18.

Abstract

Developing eco-friendly and effective flame retardants is crucial for enhancing the fire resistance of polymeric materials. This study developed a novel nitrogen‑phosphorus (NP) synergistic nanocellulose-based flame retardant (CNC-PEI-PA) by grafting polyethyleneimine (PEI) and phytic acid (PA) onto the CNC. CNC-PEI-PA demonstrated remarkable thermal stability, char-forming ability, and antibacterial activity. Notably, the height of the intumescent char layer for CNC-PEI-PA increased by 700 %, and the char yield improved from 24.5 % to 45.0 % compared to CNC. Introducing CNC-PEI-PA into polyamide 66 (PA66) raised its maximum decomposition temperature to 470.0 °C and increased the char yield by nearly 330 %. More importantly, the quick formation of a dense intumescent char layer functioned as a robust protective barrier, enhancing the flame retardancy of PA66 while also greatly improving its anti-melting droplet property. The successful preparation of NP synergistic bio-based flame retardants through a facile and eco-friendly synthetic route shows their significant potential to enhance both the flame retardancy and anti-melting droplet properties of polymer materials.

摘要

开发环保且高效的阻燃剂对于提高聚合物材料的耐火性至关重要。本研究通过将聚乙烯亚胺(PEI)和植酸(PA)接枝到纤维素纳米晶(CNC)上,开发了一种新型的氮磷(NP)协同纳米纤维素基阻燃剂(CNC-PEI-PA)。CNC-PEI-PA表现出卓越的热稳定性、成炭能力和抗菌活性。值得注意的是,与CNC相比,CNC-PEI-PA的膨胀炭层高度增加了700%,炭产率从24.5%提高到45.0%。将CNC-PEI-PA引入聚酰胺66(PA66)中,使其最大分解温度提高到470.0℃,炭产率提高了近330%。更重要的是,快速形成的致密膨胀炭层起到了强大的保护屏障作用,增强了PA66的阻燃性,同时也大大改善了其抗熔滴性能。通过简便且环保的合成路线成功制备NP协同生物基阻燃剂,显示出它们在提高聚合物材料的阻燃性和抗熔滴性能方面的巨大潜力。

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