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TunableNanopatterning of Conductive Polymers via ElectrohydrodynamicLithography

机译:可调整的通过电流体动力学对导电聚合物进行纳米构图平版印刷

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摘要

An increasing number of technologies require the fabrication of conductive structures on a broad range of scales and over large areas. Here, we introduce advanced yet simple electrohydrodynamic lithography (EHL) for patterning conductive polymers directly on a substrate with high fidelity. We illustrate the generality of this robust, low-cost method by structuring thin polypyrrole films via electric-field-induced instabilities, yielding well-defined conductive structures with feature sizes ranging from tens of micrometers to hundreds of nanometers. Exploitation of a conductive polymer induces free charge suppression of the field in the polymer film, paving the way for accessing scale sizes in the low submicron range. We show the feasibility of the polypyrrole-based structures for field-effect transistor devices. Controlled EHL pattering of conductive polymer structures at the micro and nano scale demonstrated in this study combined with the possibility of effectively tuning the dimensions of the tailor-made architectures might herald a route toward various submicron device applications in supercapacitors, photovoltaics,sensors, and electronic displays.
机译:越来越多的技术要求在广泛的规模和大面积上制造导电结构。在这里,我们介绍了先进而简单的电动流体动力学光刻(EHL),用于直接在高保真度的基板上构图导电聚合物。我们通过电场引起的不稳定性来构造聚吡咯薄膜,从而产生特征尺寸范围从数十微米到数百纳米的轮廓分明的导电结构,从而说明了这种鲁棒的低成本方法的普遍性。导电聚合物的开发引起聚合物膜中电场的自由电荷抑制,为获得低亚微米范围的氧化皮尺寸铺平了道路。我们展示了基于聚吡咯的结构对场效应晶体管器件的可行性。这项研究表明,在导电聚合物结构的微米级和纳米级上可控的EHL图案化,以及有效调整量身定制的体系结构尺寸的可能性,可能预示着在超级电容器,光伏,传感器和电子显示器。

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