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Gold nanostars as SERS-active substrates for FT-Raman spectroscopy

机译:金纳盘作为Ft-拉曼光谱的SERS-活性基板

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摘要

Gold nanostars having extinction maxima in the near infrared spectral region were synthesized according to surfactant-free or CTAB-based procedures. The SERS activity of these colloidal suspensions by 1064 nm excitation was tested with a thiolic derivative of naphtalimide as a ligand molecule. The shielding effect of the colloid on the observed Raman response was taken into account as well as the influence of nanoparticle concentration and the addition of chitosan, as stabilizer. A nanomolar limit of detection and a Raman enhancement factor of more than 10(5) were found. In particular, an important finding is that CTAB-free nanostars, even in the more biocompatible chitosan-stabilized form, still behaved as good SERS substrates in the near infrared where the occurrence of the "optical tissue window" points to their use in biological systems with minimum fluorescence background.
机译:根据表面活性剂或基于CTAB的程序合成近红外光谱区域中具有近红外光谱区域的消光的金纳米。 将这些胶体悬浮液的SERs活性用1064nm激发用萘甲酰亚胺的硫醇衍生物作为配体分子进行测试。 考虑了胶体对观察拉曼响应的屏蔽效果以及纳米颗粒浓度的影响和加入壳聚糖作为稳定剂。 发现纳摩尔检测极限和大于10(5)以上的拉曼增强因子。 特别地,一个重要的发现是即使在更具生物相容性的壳聚糖稳定的形式中,仍然表现为近红外的良好SERS基材,其中“光学组织窗口”指向其在生物系统中的使用 有最小荧光背景。

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