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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Optimisation of carbon nanotube ink for large-area transparent conducting films fabricated by controllable rod-coating method
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Optimisation of carbon nanotube ink for large-area transparent conducting films fabricated by controllable rod-coating method

机译:可控棒涂法制备大面积透明导电膜用碳纳米管油墨的优化

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Single-walled carbon nanotubes (SWCNTs) were dispersed in water with the help of surfactants to achieve high concentration SWCNT ink. SWCNT transparent conducting films (TCFs) were fabricated by rod coating using the SWCNT ink. A combination of two surfactants provided optimal rheological behaviour, which produced uniform films by preventing dewetting and rupture of SWCNTs during drying. The combination led to a dramatic increase of shear viscosities but no change of their wettability. The viscosity of SWCNT ink was controlled by the ratio of two surfactants. The thickness of SWCNT films could be easily varied by controlling both the concentration of SWCNT ink and the size of the wire-wound rod. The produced uniform SWCNT-TCFs treated by nitric acid have a relatively low sheet resistance of ~80 Ω sq~(-1) at 80% transmittance. The performance has a wide range of applied interest for touch screen and flexible electronics.
机译:借助表面活性剂,将单壁碳纳米管(SWCNT)分散在水中,以获得高浓度SWCNT油墨。 SWCNT透明导电膜(TCF)是使用SWCNT墨水通过棒涂法制造的。两种表面活性剂的组合可提供最佳的流变性能,通过防止干燥过程中SWCNT的去湿和破裂产生均匀的薄膜。该组合导致剪切粘度急剧增加,但其润湿性没有变化。 SWCNT油墨的粘度由两种表面活性剂的比例控制。通过控制SWCNT墨水的浓度和绕线棒的尺寸,可以轻松地改变SWCNT膜的厚度。硝酸处理过的均匀SWCNT-TCFs在80%的透过率下具有相对较低的〜80Ωsq〜(-1)的薄层电阻。该性能在触摸屏和柔性电子产品方面具有广泛的应用兴趣。

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