环氧树脂
材料科学
纳米复合材料
韧性
断裂韧性
复合材料
石墨烯
纳米技术
作者
Chuanjin Huang,Jingsong Peng,Sijie Wan,Yi Du,Shi Xue Dou,H. Daniel Wagner,Antoni P. Tomsia,Lei Jiang,Qunfeng Cheng
标识
DOI:10.1002/anie.201902410
摘要
Abstract Epoxy nanocomposites combining high toughness with advantageous functional properties are needed in many fields. However, fabricating high‐performance homogeneous epoxy nanocomposites with traditional methods remains a great challenge. Nacre with outstanding fracture toughness presents an ideal blueprint for the development of future epoxy nanocomposites. Now, high‐performance epoxy‐graphene layered nanocomposites were demonstrated with ultrahigh toughness and temperature‐sensing properties. These nanocomposites are composed of ca. 99 wt % organic epoxy, which is in contrast to the composition of natural nacre (ca. 96 wt % inorganic aragonite). These nanocomposites are named an inverse artificial nacre. The fracture toughness reaches about 4.2 times higher than that of pure epoxy. The electrical resistance is temperature‐sensitive and stable under various humidity conditions. This strategy opens an avenue for fabricating high‐performance epoxy nanocomposites with functional properties.
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