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首页> 外文期刊>Journal of microanolithography, MEMS, and MOEMS >From electrohydrodynamic instabilities of liquids to the high-resolution ink-jet printing through pyroelectric driving power
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From electrohydrodynamic instabilities of liquids to the high-resolution ink-jet printing through pyroelectric driving power

机译:从液体的电流体动力学不稳定性到热释电驱动力的高分辨率喷墨打印

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Nanomicropatterning of polymers and direct printing methods are becoming prominent nanofabrica-tion tools in multiple fields of application from medicine to aerospace technology. All the available processes are very expensive, requiring complex equipment and highly trained staff. Often the desired pattern cannot be realized easily and the method used for the fabrication would be a direct consequence of the material of interest, with a significant limitation in case of highly viscous polymers. We propose a very simple, low cost method that exploits the pyroelectrohydrodynamic effect for patterning polymer fibers with high resolution. In particular, we focus on the fabrication of nanocomposite polymer fiber with good mechanical and electrical properties. We start from studying the instability phase of patterning for low concentrated polymeric solutions and discuss the condition of continuous printing. Moreover, the same technique is applied for the patterning of footpath as master for the realization of microfluidic chips. The simplicity of the method proposed, associated with the high-resolution patterning achievable at nanoscale, suggest innovative and widespread uses of general purpose for in situ and noninvasive instruments in different fields of research and business cases.
机译:聚合物的纳米微图案化和直接印刷方法正在从医学到航空技术的多个应用领域中成为突出的纳米制造工具。所有可用的过程都非常昂贵,需要复杂的设备和训练有素的人员。通常,所需的图案通常不容易实现,并且用于制造的方法将是目标材料的直接结果,在高粘度聚合物的情况下存在明显的局限性。我们提出一种非常简单,低成本的方法,该方法利用热电流体动力学效应对高分辨率的聚合物纤维进行构图。特别是,我们专注于制造具有良好机械和电气性能的纳米复合聚合物纤维。我们从研究低浓度聚合物溶液构图的不稳定性阶段开始,讨论连续印刷的条件。此外,作为实现微流控芯片的主要技术,将相同的技术应用于人行道的图案化。所提出的方法的简单性,与可在纳米级实现的高分辨率图案化相结合,表明在研究和商业案例的不同领域中,原位和无创器械通用通用性的创新和广泛使用。

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