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碳纳米管和纤维素纳米晶混合薄膜。

Carbon Nanotube and Cellulose Nanocrystal Hybrid Films.

机构信息

Department of Chemical and Biomolecular Engineering, Clemson University, Clemson, SC 29634, USA.

出版信息

Molecules. 2019 Jul 23;24(14):2662. doi: 10.3390/molecules24142662.

Abstract

The use of cellulose nanocrystals (CNC) in high performance coatings is attractive for micro-scale structures or device fabrication due to the anisotropic geometry, however CNC are insulating materials. Carbon nanotubes (CNT) are also rod-shaped nanomaterials that display high mechanical strength and electrical conductivity. The hydrophobic regions of surface-modified CNC can interact with hydrophobic CNT and aid in association between the two anisotropic nanomaterials. The long-range electrostatic repulsion of CNC plays a role in forming a stable CNT and CNC mixture dispersion in water, which is integral to forming a uniform hybrid film. At concentrations favorable for film formation, the multiwalled nanotubes + CNC mixture dispersion shows cellular network formation, indicating local phase separation, while the single-walled nanotube + CNC mixture dispersion shows schlieren texture, indicating liquid crystal mixture formation. Conductive CNT + CNC hybrid films (5-20 μm thick) were cast on glass microscope slides with and without shear by blade coating. The CNT + CNC hybrid films electrical conductivity increased with increasing CNT loadings and some anisotropy was observed with the sheared hybrid films, although to a lesser extent than what was anticipated. Percolation models were applied to model the hybrid film conductivity and correlate with the hybrid film microstructure.

摘要

纤维素纳米晶体(CNC)在高性能涂料中的应用因其各向异性的几何形状而在微尺度结构或器件制造中具有吸引力,但 CNC 是绝缘材料。碳纳米管(CNT)也是一种棒状纳米材料,具有高机械强度和导电性。经过表面改性的 CNC 的疏水区段可以与疏水性 CNT 相互作用,并有助于两种各向异性纳米材料之间的结合。CNC 的长程静电排斥在形成稳定的 CNT 和 CNC 混合物在水中的分散体中起着重要作用,这是形成均匀混合膜的关键。在有利于成膜的浓度下,多壁纳米管+ CNC 混合物分散体显示出蜂窝状网络形成,表明局部相分离,而单壁纳米管+ CNC 混合物分散体显示出纹影纹理,表明液晶混合物形成。使用刀片涂层在玻璃显微镜载玻片上浇铸了具有和不具有剪切力的 CNT+ CNC 混合膜(5-20μm 厚)。随着 CNT 负载的增加,CNT+ CNC 混合膜的电导率增加,并且在剪切混合膜中观察到一些各向异性,但程度低于预期。应用渗流模型来模拟混合膜的电导率,并与混合膜的微观结构相关联。

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