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Characterization of silane-modified immobilized gold colloids as asubstrate for surface-enhanced Raman spectroscopy

机译:硅烷修饰的固定化金胶体作为表面增强拉曼光谱的底物的表征

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Immobilized gold colloid particles coated with a C-18 alkylsilane layer have been characterized as a substrate for surface-enhanced Raman scattering (SERS) studies of adsorption onto hydrophobic surfaces. Atomic force microscopy images, optical extinction spectra, and SERS measurements are reported as a function of accumulation of gold colloid on glass. As the metal particles become increasingly aggregated on the surface, the SERS enhancement increases until the plasmon resonance shifts to wavelengths longer than the excitation laser. The gold colloid substrates are stable and exhibit reproducible SERS enhancement. When octadecyltrimethoxysilane is self-assembled over the gold, the metal surface is protected from exposure to solution-phase species, as evidenced by the inhibition of chemisorption of a disulfide reagent to the overcoated gold surface. The results show that interactions with gold can be blocked by a silane layer so as not to significantly influence physisorption of molecules at the C-18/solution interface. The SERS enhancement from these C-18-overcoated gold substrates is reproducible for different films prepared from the same colloidal suspension; the substrates are also stable with time and upon exposure to laser irradiation.
机译:涂有C-18烷基硅烷层的固定化金胶体颗粒已被表征为用于表面增强拉曼散射(SERS)研究吸附到疏水表面的基质。据报道,原子力显微镜图像,消光光谱和SERS测量是玻璃上金胶体积累的函数。随着金属颗粒越来越多地聚集在表面上,SERS增强会增加,直到等离子体激元共振移到比激发激光更长的波长为止。金胶体底物是稳定的,并且表现出可再现的SERS增强。当十八烷基三甲氧基硅烷在金上自组装时,可以保护金属表面不暴露于溶液相物质,这可以通过抑制二硫化物试剂对覆盖金表面的化学吸附来证明。结果表明,与金的相互作用可以被硅烷层阻止,从而不会显着影响C-18 /溶液界面处分子的物理吸附。这些由C-18包覆的金底物引起的SERS增强对于由相同胶体悬浮液制备的不同薄膜可再现。随着时间的流逝以及暴露于激光辐照下,基材也保持稳定。

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