首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Transparent Conducting Films with Multilayered Structures Formed by Carbon Nanotubes and Reduced Graphene Oxides
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Transparent Conducting Films with Multilayered Structures Formed by Carbon Nanotubes and Reduced Graphene Oxides

机译:由碳纳米管和还原的石墨烯氧化物形成的具有多层结构的透明导电膜

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The replacement for indium tin oxide (ITO) in electronic displays should have comparable optical transmittance and electrical conductivity while being easy to source and manufacture. However, novel materials such as singlewalled carbon nanotubes (SWCNTs) and reduced graphene oxides (RGOs) are incapable of addressing these challenges. We demonstrate a simple method to fabricate good transparent conductive films (TCFs) by combining and leveraging the superior optical transparency of RGOs and the excellent electrical conductivity of SWCNTs. This method affords thin multilayers of SWCNTs and RGOs with excellent optical and electrical properties because these properties are correlated with spraying time and the amount of SWCNTs or RGOs. In general, transmittance is advantageous to RGO as conductance is to CNTs. With a view to finding good TCFs with reduced sheet resistance, but with little sacrifice of transmittance, it is natural to explore the combination of CNT and RGO. The sandwiched multilayer of SWCNTs and RGOs exhibited a low sheet resistance of 214.2 Ω/sq, which was comparable to that of SWCNTs, and a transmittance of 60% at a wavelength of 550 nm. To further reduce the sheet resistance and improve the transparency of the multilayer TCFs, Au doping was carried out. The doping, in combination with controlled spraying of the amount of SWCNTs and RGOs, led to multilayers with resistance/transmittance combinations of 141.3 Ω/sq and 70% and 371.5 Ω/sq and 83%. These properties meet the requisite criteria for an ITO replacement.
机译:电子显示器中铟锡氧化物(ITO)的替代品应具有相当的透光率和导电率,同时易于采购和制造。然而,诸如单壁碳纳米管(SWCNT)和还原型氧化石墨烯(RGO)的新型材料无法解决这些挑战。我们展示了一种简单的方法,可以通过结合并利用RGO的出色光学透明度和SWCNT的出色电导率来制造良好的透明导电膜(TCF)。该方法使SWCNT和RGO的薄多层具有优异的光学和电学性质,因为这些性质与喷涂时间和SWCNT或RGO的量相关。通常,透射率对RGO有利,因为电导率对CNT有利。为了找到具有降低的薄层电阻但几乎不牺牲透射率的良好的TCF,很自然地探索CNT和RGO的组合。 SWCNT和RGO的夹层多层具有214.2Ω/ sq的低薄层电阻,与SWCNT相当,并且在550 nm波长下的透射率为60%。为了进一步降低薄层电阻并提高多层TCF的透明度,进行了Au掺杂。掺杂结合一定数量的SWCNT和RGO的喷涂,导致多层电阻/透射比组合为141.3Ω/ sq和70%,以及371.5Ω/ sq和83%。这些特性满足ITO替换的必要条件。

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