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功能化黑磷的合理设计与哌嗪焦磷酸盐协同作用,显著抑制了聚丙烯的火灾隐患。

A rational design of functionalized black phosphorus cooperates with piperazine pyrophosphate to significantly suppress the fire hazards of polypropylene.

机构信息

State Key Laboratory of Fire Science, University of Science and Technology of China, 96 Jinzhai Road, Hefei, Anhui, 230026, PR China.

Zhuhai Gree New Material Co., Ltd., 789 Jinji Road, Xiangzhou District, Zhuhai, China.

出版信息

Chemosphere. 2023 Feb;314:137686. doi: 10.1016/j.chemosphere.2022.137686. Epub 2022 Dec 27.

Abstract

The flammability of polypropylene (PP) not only has negative effects on human health but also causes environmental pollution. Herein, from the molecular polarity point of view, rationally designed hyperbranched charring foaming agents (HCFA) modified black phosphorus nanosheets by in situ polymerization to solve the fire hazards of PP. Based on the UL-94 test V-0 rating, the conventional flame retardant of piperazine pyrophosphate (PAPP) is substituted partly by the BP@PPC. Surprisingly, compared with 27 wt% of PAPP/PP, composites consisting of only 2 wt% of BP@PPC and 20 wt% PAPP/PP also passes the V-0 rating. The results of the cone calorimeter test confirmed that adding BP@PPC decreases the total heat release (THR) and peak heat release (PHRR) by a large amount, which are decreased by 23.4%, 85.8% respectively compared with PP. Moreover, it is uncommon for the fire growth index of BP@PPC composites to be 66.7% lower than that of PAPP/PP composites. In addition, the incorporation of BP@PPC has almost no impact on the mechanical characteristics of PP composites. This study offers a reference for combining established flame retardants with novel compounds to modify the burning behaviors of PP.

摘要

聚丙烯(PP)的可燃性不仅对人体健康有负面影响,而且还会造成环境污染。在此,从分子极性的角度出发,通过原位聚合,合理设计超支化成炭发泡剂(HCFA)对黑磷纳米片进行改性,以解决 PP 的火灾隐患。基于 UL-94 测试的 V-0 等级,部分用哌嗪焦磷酸酯(PAPP)代替常规阻燃剂。令人惊讶的是,与 27wt%的 PAPP/PP 相比,仅由 2wt%的 BP@PPC 和 20wt%的 PAPP/PP 组成的复合材料也通过了 V-0 等级。锥形量热仪测试的结果证实,添加 BP@PPC 可大量降低总热释放量(THR)和峰值热释放量(PHRR),与 PP 相比,分别降低了 23.4%和 85.8%。此外,BP@PPC 复合材料的火灾增长指数比 PAPP/PP 复合材料低 66.7%是不常见的。此外,BP@PPC 的加入对 PP 复合材料的力学性能几乎没有影响。本研究为结合成熟的阻燃剂和新型化合物来改善 PP 的燃烧行为提供了参考。

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