Center for Composite Materials and Structures, Harbin Institute of Technology , Harbin 150080, People's Republic of China.
Shenzhen Strong Advanced Materials Institute Limited Corporation , Shenzhen 518057, People's Republic of China.
ACS Appl Mater Interfaces. 2017 Dec 20;9(50):44010-44017. doi: 10.1021/acsami.7b14604. Epub 2017 Dec 7.
Lightweight, high-performance, thermally insulating, and antifrosting porous materials are in increasing demand to improve energy efficiency in many fields, such as aerospace and wearable devices. However, traditional thermally insulating materials (porous ceramics, polymer-based sponges) could not simultaneously meet these demands. Here, we propose a hierarchical assembly strategy for producing nanocomposite foams with lightweight, mechanically flexible, superinsulating, and antifrosting properties. The nanocomposite foams consist of a highly anisotropic reduced graphene oxide/polyimide (abbreviated as rGO/PI) network and hollow graphene oxide microspheres. The hierarchical nanocomposite foams are ultralight (density of 9.2 mg·cm) and exhibit ultralow thermal conductivity of 9 mW·m·K, which is about a third that of traditional polymer-based insulating materials. Meanwhile, the nanocomposite foams show excellent icephobic performance. Our results show that hierarchical nanocomposite foams have promising applications in aerospace, wearable devices, refrigerators, and liquid nitrogen/oxygen transportation.
轻质、高性能、绝热和防霜多孔材料在许多领域(如航空航天和可穿戴设备)的能源效率提高方面的需求日益增加。然而,传统的绝热材料(多孔陶瓷、基于聚合物的海绵)无法同时满足这些需求。在这里,我们提出了一种分层组装策略,用于生产具有轻质、机械灵活、超级绝热和防霜性能的纳米复合泡沫。纳米复合泡沫由高度各向异性的还原氧化石墨烯/聚酰亚胺(缩写为 rGO/PI)网络和空心氧化石墨烯微球组成。分层纳米复合泡沫非常轻(密度为 9.2mg·cm),表现出超低的热导率 9 mW·m·K,约为传统聚合物基绝缘材料的三分之一。同时,纳米复合泡沫表现出优异的疏冰性能。我们的结果表明,分层纳米复合泡沫在航空航天、可穿戴设备、冰箱和液氮/氧气运输方面具有广阔的应用前景。