VTT Technical Research Centre of Finland, Espoo, Finland.
Biomacromolecules. 2012 Apr 9;13(4):1093-9. doi: 10.1021/bm2018189. Epub 2012 Mar 14.
Nanofibrillated cellulose (NFC) is a natural fibrillar material with exceptionally high mechanical properties. It has, however, been exceedingly difficult to achieve nanocomposites with drastically improved mechanical properties by dispersing NFC as random networks to polymer matrices, even using compatibilization. We show nanocomposites consisting of aligned assemblies of multilayered graphene and NFC with excellent tensile mechanical properties without any surface treatments. The optimum composition was found at 1.25 wt % graphene multilayers, giving a Young's modulus of 16.9 GPa, ultimate strength of 351 MPa, strain of 12%, and work-of-fracture of 22.3 MJ m(-3). This combines high strength with relatively high toughness and is obtained by direct exfoliation of graphite within aqueous hydrogels of NFC where an optimum sonication power is described. The results suggest the existence of an attractive interaction between multilayered graphene flakes and cellulose. Aligned assemblies are obtained by removal of water by filtration. The concept can be beneficial for applications because it results in high mechanical properties by a simple and environmentally green process.
纳米原纤纤维素(NFC)是一种具有极高机械性能的天然纤维材料。然而,通过将 NFC 分散为随机网络到聚合物基质中,即使使用增容剂,也极难获得机械性能显著提高的纳米复合材料。我们展示了由多层石墨烯和 NFC 的取向组装体组成的纳米复合材料,具有出色的拉伸机械性能,而无需任何表面处理。在 1.25wt%的石墨烯多层片中发现了最佳的组成,其杨氏模量为 16.9GPa,极限强度为 351MPa,应变率为 12%,断裂功为 22.3MJ m(-3)。这是通过在 NFC 的水凝胶中直接剥离石墨,在描述的最佳超声功率下,将高强度与相对较高的韧性相结合而获得的。结果表明,多层石墨烯薄片和纤维素之间存在吸引力相互作用。通过过滤去除水可以得到取向组装体。该概念对应用有益,因为它通过简单且环保的工艺获得了高机械性能。