Technical Institute of Physics and Chemistry, Chinese Academy of Sciences , 29 Zhongguancun East Road, Haidian District, Beijing 100190, P. R. China.
Center for Multidimensional Carbon Materials (CMCM), Institute for Basic Science (IBS) , Ulsan 44919, Republic of Korea.
ACS Appl Mater Interfaces. 2017 Aug 9;9(31):26392-26399. doi: 10.1021/acsami.7b06282. Epub 2017 Jul 27.
High-performance flame-retardant materials are urgently needed to address outstanding issues that pertain to safety. Traditional flame retardants are toxic to the environment and/or lack the physical properties required for use in many contemporary applications. Here, we show that isocyanate-based polyimide (PI) foam, a flammable material, can exhibit unusually superior flame retardancy as well as other excellent properties, such as being lightweight and displaying high mechanical strength, by incorporating red phosphorus (RP)-hybridized graphene. The covalent bonds formed between the graphene platelets and the PI matrix provide the resultant PI foam with a specific Young's modulus (83 kNm kg) that is comparable to or even higher than those displayed by state-of-the-art foams, including silica aerogels, polystyrene foams, and polyurethane foams. In addition, even a low content of the RP-hybridized graphene (2.2 wt %) results in an exceptionally higher limiting oxygen index (39.4) than those of traditional flame-retardant polymer-based materials (typically 20-30). The resultant PI foam also exhibits thermal insulation properties that are similar to that of air. Moreover, the RP-hybridized graphene is prepared using a one-step ball milling process in 100% yield, and does not require solvent or produce waste. The preparation of the flame-retardant PI foams can be scaled as the starting materials are commercially available and the techniques employed are industrially compatible.
高性能阻燃材料对于解决安全方面的突出问题迫在眉睫。传统的阻燃剂对环境有毒,或者缺乏许多现代应用所需的物理性能。在这里,我们展示了基于异氰酸酯的聚酰亚胺(PI)泡沫,一种易燃材料,通过掺入红磷(RP)-杂化石墨烯,可以表现出异常优异的阻燃性以及其他优异的性能,如轻量和高机械强度。石墨烯片与 PI 基质之间形成的共价键为所得的 PI 泡沫提供了特定的杨氏模量(83 kNm kg),与包括氧化硅气凝胶、聚苯乙烯泡沫和聚氨酯泡沫在内的最先进泡沫相当,甚至更高。此外,即使 RP-杂化石墨烯的含量低至 2.2wt%(重量百分比),其极限氧指数(39.4)也比传统阻燃聚合物基材料(通常为 20-30)高得多。所得的 PI 泡沫还表现出与空气相似的隔热性能。此外,RP-杂化石墨烯是通过一步球磨工艺以 100%的产率制备的,不需要溶剂,也不会产生废物。由于起始材料可商购且所采用的技术在工业上兼容,因此阻燃 PI 泡沫的制备可以规模化。