Maillaud Laurent, Poulin Philippe, Pasquali Matteo, Zakri Cécile
CNRS, Centre de Recherche Paul Pascal, Université de Bordeaux, 115 Avenue Schweitzer, 33600 Pessac, France.
Langmuir. 2015 Jun 2;31(21):5928-34. doi: 10.1021/acs.langmuir.5b00887. Epub 2015 May 20.
Transparent conductive films are made from aqueous surfactant stabilized dispersions of carbon nanotubes using an up-scalable rod coating method. The processability of the films is governed by the amount of surfactant which is shown to alter strongly the wetting and viscosity of the ink. The increase of viscosity results from surfactant mediated attractive interactions between the carbon nanotubes. Links between the formulation, ink rheological properties, and electro-optical properties of the films are determined. The provided guidelines are generalized and used to fabricate optimized electrodes using conductive polymers and carbon nanotubes. In these electrodes, the carbon nanotubes act as highly efficient viscosifiers that allow the optimized ink to be homogeneously spread using the rod coating method. From a general point of view and in contrast to previous studies, the CNTs are optimally used in the present approach as conductive additives for viscosity enhancements of electronic inks.
透明导电薄膜是通过一种可放大的棒涂法,由水性表面活性剂稳定的碳纳米管分散体制备而成。薄膜的可加工性受表面活性剂用量的控制,表面活性剂用量被证明会强烈改变油墨的润湿性和粘度。粘度的增加源于表面活性剂介导的碳纳米管之间的吸引相互作用。确定了配方、油墨流变性能与薄膜电光性能之间的联系。所提供的指导方针具有通用性,可用于使用导电聚合物和碳纳米管制造优化电极。在这些电极中,碳纳米管充当高效增稠剂,使优化后的油墨能够通过棒涂法均匀铺展。从总体角度来看,与之前的研究不同,在本方法中,碳纳米管被最佳地用作导电添加剂,以提高电子油墨的粘度。