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聚酰胺1210与反应型磷氮阻燃剂组成的新型共聚物的合成与表征

Synthesis and Characterization of a New Copolymer Consisting of Polyamide 1210 and Reactive Phosphorus-Nitrogen Flame-Retardant.

作者信息

Qin Lizheng, Zhou Yang, Gong Shun, Zhao Shikun, Cao Zhiwen, Deng Jianping, Pan Kai

机构信息

State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing, 100029, China.

Beijing Key Laboratory of Advanced Functional Polymer Composites, Beijing University of Chemical Technology, Beijing, 100029, China.

出版信息

Macromol Rapid Commun. 2023 Feb;44(3):e2200644. doi: 10.1002/marc.202200644. Epub 2022 Nov 29.

Abstract

The thermal stability and reactivity of organophosphorus flame-retardants play a critical role in synthesizing copolymerized flame-retardant polyamides. Herein, this work successfully synthesizes a flame-retardant CEPPA-DDA salt (CDS) with both good thermal stability and high reactivity by reacting 2-carboxyethyl phenyl phosphonic acid (CEPPA) with 1,12-dodecanediamine (DDA). Flame-retardant polyamide 1210 (FRPA) is further prepared by copolymerizing the CDS, DDA, and sebacic acid (SEA). The test results show that the introduction of CDS can significantly improve the flame-retardant properties of FRPA. Specifically, the flame-retardant polyamide 1210 (FRPA-7) with 7 wt% CDS addition can reach V-0 grade according to UL-94 standard, accompanying limiting oxygen index value of 30.2% and tensile strength of 38.62 MPa. Compared with pure polyamide 1210, the peak heat release rate and total heat release rate of FRPA-7 reduce by 24.11% and 9.40%, respectively. This study provides a simple strategy to prepare flame-retardant polyamides with high flame retardancy and good mechanical properties, which are expected to show great potentials in future industrial applications.

摘要

有机磷阻燃剂的热稳定性和反应活性在合成共聚阻燃聚酰胺中起着关键作用。在此,本工作通过使2-羧乙基苯基膦酸(CEPPA)与1,12-十二烷二胺(DDA)反应,成功合成了具有良好热稳定性和高反应活性的阻燃CEPPA-DDA盐(CDS)。通过将CDS、DDA和癸二酸(SEA)共聚进一步制备了阻燃聚酰胺1210(FRPA)。测试结果表明,CDS的引入可显著提高FRPA的阻燃性能。具体而言,添加7 wt% CDS的阻燃聚酰胺1210(FRPA-7)根据UL-94标准可达到V-0级,极限氧指数值为30.2%,拉伸强度为38.62 MPa。与纯聚酰胺1210相比,FRPA-7的峰值热释放速率和总热释放速率分别降低了24.11%和9.40%。本研究提供了一种制备具有高阻燃性和良好机械性能的阻燃聚酰胺的简单策略,有望在未来工业应用中展现出巨大潜力。

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