材料科学
纳米复合材料
石墨烯
氧化物
聚酰亚胺
复合材料
聚合物
热导率
多孔性
纳米技术
图层(电子)
冶金
作者
Qingyu Peng,Yuyang Qin,Xu Zhao,Xianxian Sun,Qiang Chen,Fan Xu,Zaishan Lin,Ye Yuan,Ying Li,Jianjun Li,Weilong Yin,Chao Gao,Fan Zhang,Xiaodong He,Yibin Li
标识
DOI:10.1021/acsami.7b14604
摘要
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–3) and exhibit ultralow thermal conductivity of 9 mW·m–1·K–1, 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.
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