纳米材料
材料科学
结晶
结晶度
化学工程
复合数
成核
多孔性
比表面积
相(物质)
复合材料
纳米技术
化学
有机化学
催化作用
工程类
作者
Xin Sun,Yunfeng Guo,Shengdu Yang,Kai Wang,Lan Xie,Bai Xue
标识
DOI:10.1002/macp.202300072
摘要
Abstract The poly( l ‐lactic acid) (PLLA)/carbon nanomaterials composite foams with hierarchical surface microstructural and internal conductive pathways are successfully prepared by a simple crystallization‐assisted rapid phase separation (CARPS). The dimension and morphology of carbon nanomaterials can induce different crystallization forms to construct the hierarchical surface microstructure, and they are distributed on the phase interface of solvent and non‐solvent to form conductive pathways. It is found that the heterogeneous nucleation of nanomaterials promotes a significant increase in crystallinity, and a stacked granular structure formed on the surface promotes the increase of the water contact angle to 148.7°. Foams with interconnecting pore structures contribute to the formation of 85.3% porosity and 12.33 g g −1 oil absorption. Carbon nanomaterials are distributed on the pore walls of the porous foam, which converts the foam from an insulating material to a conducting polymer. Furthermore, the uniform distribution of nanomaterials significantly affects the thermal stability of the PLLA. In belief, the multifunctional biodegradable foam, prepared by a CARPS method, makes it promising for industrial production and has potential applications in electrical conductivity, oil‐water separation, and many other fields.
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