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Plasmon-enhanced Raman spectroscopy: Towards hyperuniform ultrasensitive enhancement through hyperuniform disorder

机译:等离子体增强的拉曼光谱:通过过度疾病朝着过粗症超细增强

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摘要

We are developing a polymer-silver nanocomposite self-assembling-based protocol for fabricating surface-enhanced Raman scattering (SERS) substrates for versatile applications. The substrate is based on a silver-made fractal nanotexture produced by the long-range self-assembling of Ag-loaded block-copolymer micelles. We removed the nano-packing limitation imposed by the copolymer shell, achieving a condition close to the so-called hyperuniform structural disorder. Despite the large enhancement factor, estimated up to 109, the SERS response shows an ultrahigh spatial uniformity with a relative standard deviation in the range 0.9% – 5.6%, as measured from raster scans covering a total area of 1 cm2, that is from an active surface orders of magnitude larger than the typical nanofeature size and produced by an innovative low-cost and immediate deposition. The SERS-active coating allows large-scale spectroscopic scanning as required for real biological applications, still having, as experimentally evidenced, single-molecule sensitivity.
机译:我们正在开发一种基于聚合物 - 银纳米复合材料的自组装,用于制造表面增强的拉曼散射(SERS)基板,用于多功能应用。基材基于由Ag加载的嵌段共聚物胶束的长距离自组装产生的银制造的分形纳米纹理。我们取下了共聚物壳施加的纳米包装限制,实现了靠近所谓的超晶体结构障碍的条件。尽管增强因子大,估计高达109,但SERS响应显示出具有0.9%-5.6%范围内的相对标准偏差的超高空间均匀性,从覆盖覆盖1cm2的总面积的光栅扫描测量。主动表面级大于典型的纳米型尺寸,并通过创新的低成本和立即沉积产生。 SERS-活性涂层允许根据真实的生物应用所需的大规模光谱扫描,仍然具有实验证明的单分子敏感性。

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