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Chemical Postdeposition TreatmentsTo Improve the Adhesion of Carbon Nanotube Filmson Plastic Substrates

机译:化学后沉积处理改善碳纳米管薄膜的附着力在塑料基材上

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摘要

The robust adhesion of single-walled carbon nanotubes (SWCNTs) to plastic substrates is a key issue toward their use in flexible electronic devices. In this work, semitransparent SWCNT films were prepared by spray-coating on two different plastic substrates, specifically poly(ethylene terephthalate) and poly(vinylidene fluoride). The deposited SWCNT films were treated by dipping in suitable solvents separately, namely, 53% nitric acid (HNO3) and N-methyl pyrrolidone. Direct evidence of SWCNT adhesion to the substrate was obtained by a peel-off test carried out with an adhesive tape. Moreover, these treatments caused enhanced film transparency and electrical conductivity. Electron microscopy images suggested that SWCNTs were embedded in the plastic substrates, forming a thin layer of conductive composite materials. Raman spectroscopy detected a certain level of doping in the SWCNTs after the chemical treatments, which particularly affected metallic nanotubes in the case of the HNO3 treatment. The microscopic adhesion and hardness of the SWCNT films were studiedthrough a nanoscratch test. Overall, the efficiency of selected chemicalpostdeposition treatments for improving the SWCNT adhesion and therobustness of the resulting SWCNT films are demonstrated on flexiblesubstrates of different chemical compositions.
机译:单壁碳纳米管(SWCNT)与塑料基板的牢固粘合是其在柔性电子设备中使用的关键问题。在这项工作中,通过在两种不同的塑料基材上喷涂形成半透明的SWCNT膜,特别是聚对苯二甲酸乙二酯和聚偏二氟乙烯。通过分别浸入合适的溶剂(即53%硝酸(HNO3)和N-甲基吡咯烷酮)中处理沉积的SWCNT膜。通过用胶带进行的剥离试验获得SWCNT对基材的粘附的直接证据。此外,这些处理导致膜的透明性和导电性增强。电子显微镜图像表明,SWCNT嵌入在塑料基材中,形成了一层导电复合材料薄层。拉曼光谱法在化学处理后在SWCNT中检测到一定程度的掺杂,这在HNO3处理的情况下尤其会影响金属纳米管。研究了SWCNT薄膜的微观附着力和硬度通过纳米划痕测试。总体而言,所选化学品的效率沉积后处理可改善SWCNT的附着力和所展示的SWCNT薄膜的耐用性在挠性上得到了证明不同化学成分的底物。

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