He Linxiang, Liao Chengzhu, Tjong Sie Chin
Department of Physics, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong, China.
Department of Materials Science and Engineering, Southern University of Science and Technology, Shenzhen 518055, China.
Nanomaterials (Basel). 2018 Apr 7;8(4):224. doi: 10.3390/nano8040224.
Recent development in liquid-phase processing of single-walled carbon nanotubes (SWNTs) has revealed rod-coating as a promising approach for large-scale production of SWNT-based transparent conductors. Of great importance in the ink formulation is the stabilizer having excellent dispersion stability, environmental friendly and tunable rheology in the liquid state, and also can be readily removed to enhance electrical conductivity and mechanical stability. Herein we demonstrate the promise of graphene oxide (GO) as a synergistic stabilizer for SWNTs in water. SWNTs dispersed in GO is formulated into inks with homogeneous nanotube distribution, good wetting and rheological properties, and compatible with industrial rod coating practice. Microwave treatment of rod-coated films can reduce GOs and enhance electro-optical performance. The resultant films offer a sheet resistance of ~80 Ω/sq at 86% transparency, along with good mechanical flexibility. Doping the films with nitric acid can further decrease the sheet resistance to ~25 Ω/sq. Comparing with the films fabricated from typical surfactant-based SWNT inks, our films offer superior adhesion as assessed by the Scotch tape test. This study provides new insight into the selection of suitable stabilizers for functional SWNT inks with strong potential for printed electronics.
单壁碳纳米管(SWNTs)液相处理的最新进展表明,棒涂法是大规模生产基于SWNT的透明导体的一种有前途的方法。在油墨配方中,至关重要的是稳定剂要具有出色的分散稳定性、环境友好性以及液态下可调节的流变学特性,并且还能够容易地去除以提高导电性和机械稳定性。在此,我们展示了氧化石墨烯(GO)作为SWNTs在水中的协同稳定剂的前景。分散在GO中的SWNTs被配制成具有均匀纳米管分布、良好润湿性和流变学特性且与工业棒涂工艺兼容的油墨。对棒涂薄膜进行微波处理可以还原GO并提高电光性能。所得薄膜在86%的透明度下具有约80Ω/sq的方块电阻,同时具有良好的机械柔韧性。用硝酸对薄膜进行掺杂可以进一步将方块电阻降低至约25Ω/sq。通过胶带测试评估,与由典型的基于表面活性剂的SWNT油墨制成的薄膜相比,我们的薄膜具有更好的附着力。这项研究为具有印刷电子强大潜力的功能性SWNT油墨选择合适的稳定剂提供了新的见解。