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Development of SAM-based multi-layer SERS substrates for intracellular analyses

机译:用于细胞内分析的基于SAM的多层SERS底物的开发

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Surface-enhanced Raman scattering (SERS) is a powerful tool for intracellular analyses due its minimally invasive nature and molecular specificity. This research focuses on optimizing the sensitivity of SERS in order to widely apply it to the detection of ultra-trace biomolecules within individual living cells. Recent results have shown that large SERS enhancement factors (EF) can be achieved with multi-layer SERS substrates. To fabricate multi-layer SERS substrates, alternating layers of metal films and dielectric spacers are cast over a non-confluent monolayer of nanostructures. Individual particles of these substrates are then immobilized with antibodies to develop SERS-based immuno-nanosensors.rnThe multi-layer SERS EFs can be increased by the use of appropriate dielectric spacer to fabricate the substrates. To further understand the effect of dielectric spacers on the multi-layer SERS EFs, this talk discusses the characterization of the SERS enhancements of multi-layer metal film on nanostructure SERS substrates fabricated with self-assembled monolayer (SAM) spacers. Monolayers with different chain lengths have been systematically capped with varying amount of metal films. It was found that the SERS EFs depend on the nature of the monolayer formed and the amount of metal film deposited on the monolayer. Using optimal SAMs and the appropriate amount of metal film overlayers, SAM multi-layer SERS substrate with optimized SERS intensity can be fabricated. This talk will also explore the functionalization of the SERS substrates with appropriate bio-recognition elements to develop SERS-based immuno-nanosensors.
机译:表面增强拉曼散射(SERS)具有微创特性和分子特异性,是细胞内分析的强大工具。这项研究致力于优化SERS的灵敏度,以便将其广泛应用于检测单个活细胞内的超痕量生物分子。最近的结果表明,使用多层SERS基底可以实现较大的SERS增强因子(EF)。为了制造多层SERS基板,将金属膜和介电垫片的交替层浇铸在非汇合的纳米结构单层上。然后将这些基质的单个颗粒固定在抗体上,以开发基于SERS的免疫纳米传感器。多层SERS EF可以通过使用适当的介电间隔物来制造基质来增加。为了进一步了解介电间隔物对多层SERS EF的影响,本讲座讨论了用自组装单层(SAM)间隔物制造的纳米结构SERS基底上多层金属膜的SERS增强特性。具有不同链长的单分子层已被各种数量的金属膜系统地覆盖。发现SERS EF取决于所形成的单层的性质以及沉积在单层上的金属膜的量。使用最佳SAM和适量的金属膜覆盖层,可以制造具有最佳SERS强度的SAM多层SERS基板。本演讲还将探讨具有适当生物识别元件的SERS底物的功能化,以开发基于SERS的免疫纳米传感器。

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