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石墨相氮化碳/富磷铝膦酸盐杂化物作为聚苯乙烯的抑烟剂和阻燃剂。

Graphitic carbon nitride/phosphorus-rich aluminum phosphinates hybrids as smoke suppressants and flame retardants for polystyrene.

机构信息

College of Environment and Resources, Fuzhou University, 2 Xueyuan Road, Fuzhou, 350002, PR China; State Key Laboratory of Fire Science, University of Science and Technology of China, 96 Jinzhai Road, Hefei, 230026, PR China.

State Key Laboratory of Fire Science, University of Science and Technology of China, 96 Jinzhai Road, Hefei, 230026, PR China; Nanotechnology Centre, Institute of Textiles & Clothing, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong.

出版信息

J Hazard Mater. 2017 Jun 15;332:87-96. doi: 10.1016/j.jhazmat.2017.03.006. Epub 2017 Mar 6.

Abstract

Graphitic carbon nitride/organic aluminum hypophosphites (g-CN/OAHPi) hybrids, i.e., CPDCPAHPi and CBPODAHPi, were synthesized by esterification and salification reactions, and then incorporated into polystyrene (PS) to prepare composites through a melt blending method. Structure and morphology characterizations demonstrated the successful synthesis of PDCPAHPi, BPODAHPi and their hybrids. The g-CN protected OAHPi from external heat and thus improved the thermal stability of OAHPi. Combining g-CN with OAHPi contributed to reduction in peak of heat release rate, total heat release and smoke production rate of PS matrix. Reduced smoke released has also been demonstrated by smoke density chamber testing. Additionally, introduction of the hybrids led to decreased release of flammable aromatic compounds. These properties improvement could be attributed to gas phase action and physical barrier effect in condensed phase: phosphorus-containing low-energy radicals generated from OAHPi effectively captured high-energy free-radicals evolved from PS; g-CN nanosheets retarded the permeation of heat and the escape of volatile degradation products. Therefore, g-CN/OAHPi hybrids will provide a potential strategy to reduce the fire hazards of PS.

摘要

石墨相氮化碳/有机次膦酸铝(g-CN/OAHPi)杂化物,即 CPDCPAHPi 和 CBPODAHPi,通过酯化和磺化反应合成,然后通过熔融共混法掺入聚苯乙烯(PS)中制备复合材料。结构和形貌表征证明了 PDCPAHPi、BPODAHPi 及其杂化物的成功合成。g-CN 保护 OAHPi 免受外部热量影响,从而提高了 OAHPi 的热稳定性。g-CN 与 OAHPi 的结合有助于降低 PS 基体的放热率峰值、总放热量和生烟率。烟雾密度室测试也证明了烟雾释放量的减少。此外,引入杂化物导致易燃芳香族化合物的释放减少。这些性能的提高可归因于气相作用和凝聚相的物理屏障效应:OAHPi 中产生的含磷低能量自由基有效地捕获了 PS 中释放的高能自由基;g-CN 纳米片减缓了热量的渗透和挥发性降解产物的逸出。因此,g-CN/OAHPi 杂化物将为降低 PS 的火灾风险提供一种潜在策略。

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