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理解纳米纤维素对碳纳米材料的分散作用。

Understanding the Dispersive Action of Nanocellulose for Carbon Nanomaterials.

机构信息

Department of Fibre and Polymer Technology, Wallenberg Wood Science Centre, KTH Royal Institute of Technology , Teknikringen 56, 100 44, Stockholm, Sweden.

Division of Solid Mechanics, Department of Management and Engineering, Linköping University , SE-581 83 Linköping, Sweden.

出版信息

Nano Lett. 2017 Mar 8;17(3):1439-1447. doi: 10.1021/acs.nanolett.6b04405. Epub 2017 Feb 13.

Abstract

This work aims at understanding the excellent ability of nanocelluloses to disperse carbon nanomaterials (CNs) in aqueous media to form long-term stable colloidal dispersions without the need for chemical functionalization of the CNs or the use of surfactant. These dispersions are useful for composites with high CN content when seeking water-based, efficient, and green pathways for their preparation. To establish a comprehensive understanding of such dispersion mechanism, colloidal characterization of the dispersions has been combined with surface adhesion measurements using colloidal probe atomic force microscopy (AFM) in aqueous media. AFM results based on model surfaces of graphene and nanocellulose further suggest that there is an association between the nanocellulose and the CN. This association is caused by fluctuations of the counterions on the surface of the nanocellulose inducing dipoles in the sp carbon lattice surface of the CNs. Furthermore, the charges on the nanocellulose will induce an electrostatic stabilization of the nanocellulose-CN complexes that prevents aggregation. On the basis of this understanding, nanocelluloses with high surface charge density were used to disperse and stabilize carbon nanotubes (CNTs) and reduced graphene oxide particles in water, so that further increases in the dispersion limit of CNTs could be obtained. The dispersion limit reached the value of 75 wt % CNTs and resulted in high electrical conductivity (515 S/cm) and high modulus (14 GPa) of the CNT composite nanopapers.

摘要

这项工作旨在理解纳米纤维素将碳纳米材料 (CN) 分散在水介质中形成长期稳定胶体分散体的优异能力,而无需对 CN 进行化学功能化或使用表面活性剂。当寻求基于水的、高效的和绿色的途径来制备复合材料时,这些分散体对于高含量 CN 的复合材料是有用的。为了全面理解这种分散机制,已经将分散体的胶体特性与使用胶体探针原子力显微镜 (AFM) 在水介质中的表面粘附测量结合起来。基于石墨烯和纳米纤维素的模型表面的 AFM 结果进一步表明,纳米纤维素与 CN 之间存在关联。这种关联是由纳米纤维素表面上的抗衡离子的波动引起的,在 CN 的 sp 碳晶格表面上诱导偶极子。此外,纳米纤维素上的电荷将诱导纳米纤维素-CN 复合物的静电稳定化,从而防止聚集。在此基础上,使用具有高表面电荷密度的纳米纤维素在水中分散和稳定碳纳米管 (CNT) 和还原氧化石墨烯颗粒,从而可以进一步提高 CNT 的分散极限。分散极限达到 75wt%CNT 的值,导致 CNT 复合纳米纸具有高电导率(515S/cm)和高模量(14GPa)。

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