Wan Mei, Shi Congling, Qian Xiaodong, Qin Yueping, Jing Jingyun, Che Honglei
School of Emergency Management and Safety Engineering, China University of Mining and Technology, Beijing 100083, China.
Beijing Key Laboratory of Metro Fire and Passenger Transportation Safety, China Academy of Safety Science and Technology, Beijing 100012, China.
Nanomaterials (Basel). 2022 Mar 29;12(7):1142. doi: 10.3390/nano12071142.
In this work, a novel functionalization strategy for ZIF-67-modified layered MXene was proposed, aiming at improving the fire safety of thermoplastic polyurethanes (TPU). The ZIF-67@MXene was verified by microscopic morphology, elemental composition, functional group species and crystal structure, and then the successfully prepared ZIF-67@MXene was introduced into the TPU material. When ZIF-67@MXene content was only 0.5 wt%, the peak heat release rate, total heat release rate, peak smoke release rate, total smoke release rate, and CO yield of the TPU/ZIF-67@MXene composites were reduced by 26%, 9%, 50%, and 22%, respectively, compared with the pure TPU. The thermogravimetric tests showed that the residual char of TPU/ZIF-67@MXene composites was the most in all samples. In short, the high-quality carbon layer of TPU/ZIF-67@MXene composites acts as a physical barrier to the transfer of heat and toxic gases, greatly improving the flame retardant properties of the TPU polymer.
在这项工作中,提出了一种用于ZIF-67改性层状MXene的新型功能化策略,旨在提高热塑性聚氨酯(TPU)的消防安全性能。通过微观形态、元素组成、官能团种类和晶体结构对ZIF-67@MXene进行了表征,然后将成功制备的ZIF-67@MXene引入TPU材料中。当ZIF-67@MXene含量仅为0.5 wt%时,与纯TPU相比,TPU/ZIF-67@MXene复合材料的热释放速率峰值、总热释放速率、烟释放速率峰值、总烟释放速率和CO产率分别降低了26%、9%、50%和22%。热重测试表明,TPU/ZIF-67@MXene复合材料在所有样品中的残炭量最多。简而言之,TPU/ZIF-67@MXene复合材料的高质量碳层起到了热和有毒气体传递的物理屏障作用,大大提高了TPU聚合物的阻燃性能。