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Electrospray Deposition of Carbon Nanotube Thin Films for Flexible Transparent Electrodes

机译:用于柔性透明电极的碳纳米管薄膜的电喷雾沉积

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Flexible transparent carbon nanotube (CNT) electrodes were fabricated by electrospray deposition, a large-area scalable and cost-effective process. The carbon nanotubes were dispersed in N,N-dimethylformamide (DMF) and deposited on polyethylene terephthalate (PET) substrates by electrospray deposition process at room temperature and atmospheric pressure. Major process variables were characterized and optimized for the electrospray process development such as electric field between nozzle and substrates, CNT solution flowrate, gap between nozzle and substrates, solution concentration, solvent properties and surface temperature. The sheet resistance of the electrospray deposited CNT films were reduced by HNO_3 doping process. 169 Ω/sq sheet resistance and 86% optical transmittance was achieved with low surface roughness of 1.2 nm. The films showed high flexibility and transparency, making them potential replacements of ITO or ZnO in such as solid state lighting, touch panels, and solar cells. Electrospray process is a scalable process and we believe that this process can be applied for large area carbon nanotube film formation.
机译:柔性透明碳纳米管(CNT)电极是通过电喷雾沉积法制造的,这是一种大面积可扩展且经济高效的工艺。将碳纳米管分散在N,N-二甲基甲酰胺(DMF)中,并在室温和大气压下通过电喷雾沉积工艺沉积在聚对苯二甲酸乙二醇酯(PET)基底上。对主要工艺变量进行了表征并针对电喷雾工艺开发进行了优化,例如喷嘴与基材之间的电场,CNT溶液流量,喷嘴与基材之间的间隙,溶液浓度,溶剂性质和表面温度。通过HNO_3掺杂工艺降低了电喷雾沉积的CNT膜的薄层电阻。在1.2 nm的低表面粗糙度下,可实现169Ω/ sq的薄层电阻和86%的透光率。这些薄膜具有很高的柔韧性和透明度,使其成为固态照明,触摸屏和太阳能电池等中ITO或ZnO的潜在替代物。电喷雾工艺是可扩展的工艺,我们认为该工艺可用于大面积碳纳米管成膜。

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