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Smartly aligning nanowires by a stretching strategy and their application as encoded sensors

机译:通过拉伸策略智能对齐纳米线及其在编码传感器中的应用

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摘要

The nanotechnology world is being more and more attracted toward high aspect ratio one-dimensional nanostructures due to their potentials as building blocks for electronic/optical devices. Here, we propose a novel method to generate nanowire patterns with assistance of superhydrophobic flexible polydimethylsiloxane (PDMS) substrates. Micropillar gaps are tunable via a stretching process of the PDMS surface; thus, diverse nanowire patterns can be formed by stretching the same PDMS surface in various ways. Importantly, square nanowire loops with alternative compositions can be generated through a double-stretching process, showing an advanced methodology in controlling the alignment of nanowires. Since alternative fluorescent molecules will be quenched by diverse chemical substances, this alternative nanowire loop shows a selective detection for diverse target compounds, which greatly improves the application of this nanowire patterning approach. Furthermore, such alternative nanowire patterns can be transferred from pillar-structured surfaces to flat films, indicating further potentials in microcircuits, sensitive sensors, and other organic functional nanodevices.
机译:由于其作为电子/光学设备的基础材料的潜力,纳米技术世界正越来越被高纵横比的一维纳米结构所吸引。在这里,我们提出了一种借助超疏水柔性聚二甲基硅氧烷(PDMS)衬底生成纳米线图案的新颖方法。微柱间隙可通过PDMS表面的拉伸过程进行调整;因此,可以通过以各种方式拉伸相同的PDMS表面来形成各种纳米线图案。重要的是,具有替代成分的方形纳米线环可以通过两次拉伸过程生成,显示了控制纳米线排列的先进方法。由于替代的荧光分子将被多种化学物质淬灭,因此该替代的纳米线环显示出对多种目标化合物的选择性检测,极大地改善了这种纳米线图案化方法的应用。此外,这样的替代纳米线图案可以从柱状结构的表面转移到平坦的膜上,表明微电路,敏感传感器和其他有机功能纳米器件中的进一步电势。

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