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Universal substrates based on Ag colloidal particles for routine surface-enhanced Raman scattering spectral measurements

机译:基于Ag胶体粒子的通用基材,用于常规表面增强拉曼散射光谱测量

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We developed a method to fabricate sensitive and stable substrates that can be used in routine surface-enhanced Raman scattering (SERS) spectral measurements. The substrates were fabricated by immobilization of Ag colloidal particles on a glass plate coated with poly(4-vinyl pyridine) (P4VP), adsorption of molecules on the immobilized colloidal particles, and second immobilization. In the second step, we adsorbed weakly adsorbed molecules such as aniline instead of target molecules. We purified pristine silver sols by centrifuging to increase the surface charge of the colloidal particles and optimized Ag colloidal particle diameter to achieve high Raman signal enhancement from their dimers. When purified silver sols were used in the immobilizations, dimers were predominantly formed with very few trimers. When target molecular solutions were dropped in arrays on the substrate prepared by adsorbing aniline and dried, a good SERS spectrum was observed from each spot without any peaks of aniline and P4VP. The average enhancement was found to be 1.0 × 107 and the enhancement of the dimers was ~1.6 × 107. The latter corresponds to the enhancement outside the hotspot regions, since target molecules could not be adsorbed at the junctions after the formation of dimers. About one hundred samples could be tested on the substrate fabricated on a cover glass when target molecular solutions were dropped by using a micropipette. Since dropping and drying are very simple and easy processes, and many samples could be tested on a substrate, our substrates can be used in routine SERS spectral measurements and assays like bioassays.
机译:我们开发了一种制造敏感稳定基板的方法,该方法可用于常规的表面增强拉曼散射(SERS)光谱测量。通过将Ag胶体颗粒固定在涂有聚(4-乙烯基吡啶)(P4VP)的玻璃板上,将分子吸附在固定的胶体颗粒上并进行第二次固定来制造基板。在第二步中,我们吸附了弱吸附的分子(例如苯胺)而不是目标分子。我们通过离心纯化原始的银溶胶以增加胶体颗粒的表面电荷,并优化了Ag胶体粒径,从而从其二聚体中获得高拉曼信号增强。当纯化的银溶胶用于固定化时,形成的二聚体几乎没有三聚体。当目标分子溶液以阵列形式滴在通过吸附苯胺而制备的基质上并干燥后,从每个斑点观察到良好的SERS光谱,而没有苯胺和P4VP的任何峰。发现平均增强为1.0×10 7 ,二聚体的增强为〜1.6×10 7 。后者对应于热点区域之外的增强,因为在二聚体形成之后目标分子不能被吸附在接合处。当使用微量移液器滴下目标分子溶液时,可以在盖玻片上制造的基板上测试约一百个样品。由于滴加和干燥非常简单,容易,并且可以在基质上测试许多样品,因此我们的基质可用于常规SERS光谱测量和生物测定等测定。

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