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首页> 外文期刊>Journal of optics >Nanostructured SERS substrates produced by nanosphere lithography and plastic deformation through direct peel-off on soft matter
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Nanostructured SERS substrates produced by nanosphere lithography and plastic deformation through direct peel-off on soft matter

机译:通过纳米球面光刻和通过在软物质上直接剥离产生的塑性变形产生的纳米结构SERS基底

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摘要

We present a novel fragmented-film surface-enhanced Raman scattering (SERS) substrate produced by nanosphere lithography and direct peel-off for SERS efficacy enhancement. The 2D hexagonally close-packed polystyrene nanospheres on the polydimethylsilozane (PDMS) substrate are covered with silver film and then directly peeled off using sticky tape. During the peel-off process, the pulling force induces the stretch and contraction of the PDMS substrate and causes fracture of the 2D triangular silver film. Under laser excitation, a stronger localized electric field is induced in the smaller cracks and enhances the SERS intensity. The origin of this SERS enhancement is confirmed by numerical simulation using the finite element method and substrate annealing to smoothen the cracks. For the case using nanospheres with a diameter of 740 nm, an enhancement factor 6.5 x 10(6) can be achieved. The proposed fragmented-film SERS substrate gains 1.8 and 2.6 times larger Raman intensity at the 1358 cm(-1) SERS peak than those using pyramidal silver islands and silver nanoshell array. The proposed SERS substrate has the features of easy fabrication, low production cost, short fabrication time and high enhancement factor.
机译:我们提出了一种新型的碎膜表面增强拉曼散射(SERS)底物,该底物是通过纳米球光刻技术产生的,并且可以直接剥离以提高SERS功效。聚二甲基硅氮烷(PDMS)基板上的二维六角形密堆积聚苯乙烯纳米球被银膜覆盖,然后使用胶带直接剥离。在剥离过程中,拉力引起PDMS基材的拉伸和收缩,并导致2D三角形银膜断裂。在激光激发下,在较小的裂纹中会产生较强的局部电场,从而增强SERS强度。通过使用有限元方法和基板退火以平滑裂纹的数值模拟,可以确认这种SERS增强的起源。对于使用直径为740 nm的纳米球的情况,可以实现6.5 x 10(6)的增强因子。所提出的碎片膜SERS基底在1358 cm(-1)SERS峰处的拉曼强度比使用金字塔形银岛和银纳米壳阵列的拉曼强度大1.8和2.6倍。所提出的SERS衬底具有易于制造,生产成本低,制造时间短和增强因子高的特征。

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