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Nanotransfer printing of gold disk, ring and crescent arrays and their IR range optical properties

机译:金片,环形和新月形阵列的纳米转移印刷及其红外范围的光学性能

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We demonstrate a facile method to fabricate gold plasmonic microstructures based on the combination of colloidal lithography and a nanotransfer printing method. Poly(dimethylsiloxane) PDMS hemisphere arrays were fabricated through colloidal lithography and used as a "stamp" for the nanotransfer printing. Three kinds of plasmonic microstructures, gold disk, ring and crescent arrays, were fabricated by transferring gold "ink" onto the PDMS stamp, then to the substrate based on covalent "glue". By adjusting the pressure applied during the printing process, the diameter of the as-prepared gold disks and gold rings can be precisely controlled, and these plasmonic arrays all exhibited significant diameter dependent LSPR properties in the NIR or Mid-IR range. In addition, by obliquely depositing gold ink onto the PDMS stamp, a gold crescent array with asymmetrical geometry was also prepared on the substrate. Owing to the asymmetric structure of the gold crescents, the gold crescent array showed significant polarization dependent LSPR properties in the Mid-IR range. We believe that these as-prepared gold plasmonic microstructures could show promising potential for application as real-time, label-free plasmonic sensing platforms in the IR range.
机译:我们展示了一种基于胶体光刻技术和纳米转移印刷方法相结合的制造金等离激元微观结构的简便方法。聚(二甲基硅氧烷)PDMS半球阵列是通过胶体光刻技术制造的,并用作纳米转移印刷的“印记”。通过将金“墨水”转移到PDMS压模上,然后基于共价“胶水”转移到基底上,制造了三种等离子微结构,即金盘,环形和新月形阵列。通过调节在印刷过程中施加的压力,可以精确控制所制备的金盘和金戒指的直径,并且这些等离激元阵列在NIR或Mid-IR范围内均显示出显着的直径相关LSPR特性。此外,通过将金墨水倾斜沉积到PDMS压模上,还可以在基板上制备具有不对称几何形状的金新月形阵列。由于金新月形的不对称结构,金新月形阵列在中红外范围内显示出明显的偏振相关LSPR特性。我们相信,这些制备的金等离激元微观结构在红外范围内作为实时,无标签等离激元传感平台的应用可能显示出广阔的前景。

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