There is a great need for viable alternatives to today's transparent conductive film using largely indium tin oxide. We report the fabrication of a new type of flexible transparent conductive film using silver nanowires (AgNW) and single-walled carbon nanotube (SWCNT) networks which are fully embedded in a UV curable resin substrate. The hybrid SWCNTs-AgNWs film is relatively flat so that the RMS roughness of the top surface of the film is 3ânm. Addition of SWCNTs networks make the film resistance uniform; without SWCNTs, sheet resistance of the surface composed of just AgNWs in resin varies from 20âΩ/sq to 10(7â)Ω/sq. With addition of SWCNTs embedded in the resin, sheet resistance of the hybrid film is 29â±â5âΩ/sq and uniform across the 47âmm diameter film discs; further, the optimized film has 85% transparency. Our lamination-transfer UV process doesn't need solvent for sacrificial substrate removal and leads to good mechanical interlocking of the nano-material networks. Additionally, electrochemical study of the film for supercapacitors application showed an impressive 10 times higher current in cyclic voltammograms compared to the control without SWCNTs. Our fabrication method is simple, cost effective and enables the large-scale fabrication of flat and flexible transparent conductive films.
Totally embedded hybrid thin films of carbon nanotubes and silver nanowires as flat homogenous flexible transparent conductors.
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作者:Pillai Suresh Kumar Raman, Wang Jing, Wang Yilei, Sk Md Moniruzzaman, Prakoso Ari Bimo, Rusli, Chan-Park Mary B
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2016 | 起止号: | 2016 Dec 8; 6:38453 |
| doi: | 10.1038/srep38453 | ||
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