MXene based core-shell flame retardant towards reducing fire hazards of thermoplastic polyurethane

阻燃剂 材料科学 热塑性聚氨酯 聚磷酸铵 聚氨酯 复合材料 热稳定性 炭化 复合数 可燃性 烟雾 化学工程 废物管理 弹性体 工程类
作者
Chuan Liu,Ansheng Yao,Kexin Chen,Yongqian Shi,Yuezhan Feng,Ping Zhang,Fuqiang Yang,Minghua Liu,Zhixin Chen
出处
期刊:Composites Part B-engineering [Elsevier BV]
卷期号:226: 109363-109363 被引量:134
标识
DOI:10.1016/j.compositesb.2021.109363
摘要

Amounts of heat and toxic fumes are released during the combustion of polymeric materials, which severely threats to the human health and causes the environmental pollution. Therefore, it is vital to find an effective way to address these problems. Herein, titanium carbide (Ti3C2Tx) and chitosan (CS) were firstly adopted to functionalize ammonium polyphosphate (APP) via the microencapsulation and layer-by-layer assembly. Afterwards, the as-synthesized core-shell-structured hybrid ([email protected]@Ti3C2Tx) was used to enhance the interface compatibility, thermal stability and fire safety of thermoplastic polyurethane (TPU) composites. The results demonstrated that the [email protected]@Ti3C2Tx hybrid presented a strong interface interaction with the TPU matrix. Besides, TPU/[email protected]@Ti3C2Tx composites exhibited the improved thermal stability. The TPU composite containing [email protected]@0.5Ti3C2Tx achieved V-0 rating in the UL-94 testing. The cone calorimetry results illustrated that introduction of [email protected]@0.5Ti3C2Tx into TPU caused remarkable reduction in the total heat release (73.0%) and total smoke release (77.3%). Furthermore, the total carbon monoxide yield and total carbon dioxide yield of TPU/[email protected]@0.5Ti3C2Tx were significantly decreased by 75.3% and 75.3%, respectively, compared to those of pure TPU. The synergistic charring effect between [email protected] and Ti3C2Tx, the thermal oxidization action and “tortuous path” effect of Ti3C2Tx nanosheets combined with the trapping effect of [email protected] resulted in the dramatically improved fire resistance of the polymeric material. This work offers an innovative strategy to fabricate the high-performance polymer composites with superior fire safety.
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