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首页> 外文期刊>Nature Communications >Direct printing of nanostructures by electrostatic autofocussing of ink nanodroplets
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Direct printing of nanostructures by electrostatic autofocussing of ink nanodroplets

机译:通过油墨纳米液滴的静电自动聚焦直接印刷纳米结构

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Nanotechnology, with its broad impact on societally relevant applications, relies heavily on the availability of accessible nanofabrication methods. Even though a host of such techniques exists, the flexible, inexpensive, on-demand and scalable fabrication of functional nanostructures remains largely elusive. Here we present a method involving nanoscale electrohydrodynamic ink-jet printing that may significantly contribute in this direction. A combination of nanoscopic placement precision, soft-landing fluid dynamics, rapid solvent vapourization, and subsequent self-assembly of the ink colloidal content leads to the formation of scaffolds with base diameters equal to that of a single ejected nanodroplet. The virtually material-independent growth of nanostructures into the third dimension is then governed by an autofocussing phenomenon caused by local electrostatic field enhancement, resulting in large aspect ratio. We demonstrate the capabilities of our electrohydrodynamic printing technique with several examples, including the fabrication of plasmonic nanoantennas with features sizes down to 50 nm.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:纳米技术对社会相关应用有着广泛的影响,它在很大程度上取决于可及的纳米加工方法的可用性。即使存在许多这样的技术,功能性纳米结构的灵活,廉价,按需和可扩展的制造仍然大为难以捉摸。在这里,我们提出了一种涉及纳米级电动液压喷墨打印的方法,该方法可能会在这个方向上做出重大贡献。纳米级放置精度,软着陆流体动力学,快速的溶剂汽化以及随后的油墨胶体含量的自组装的结合导致形成具有基本直径等于单个喷射的纳米液滴的支架的支架。纳米结构实际上独立于材料的增长到三维,然后由局部静电场增强引起的自动聚焦现象控制,从而导致大的长宽比。我们通过几个示例演示了我们的电动流体打印技术的功能,其中包括特征尺寸低至50 nm的等离子纳米天线的制造。 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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