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Extreme red shifted SERS nanotags

机译:极红移SERS纳米标签

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摘要

Surfaced enhanced Raman scattering (SERS) nanotags operating with 1280 nm excitation were constructed from reporter molecules selected from a library of 14 chalcogenopyrylium dyes containing phenyl, 2-thienyl, and 2-selenophenyl substituents and a surface of hollow gold nanoshells (HGNs). These 1280 SERS nanotags are unique as they have multiple chalcogen atoms available which allow them to adsorb strongly onto the gold surface of the HGN thus producing exceptional SERS signals at this long excitation wavelength. Picomolar limits of detection (LOD) were observed and individual reporters of the library were identified by principal component analysis and classified according to their unique structure and SERS spectra.
机译:从报道分子中构建了在1280 nm激发下工作的表面增强拉曼散射(SERS)纳米标签,该分子选自14种硫属吡啶鎓染料文库,其中含有苯基,2-噻吩基和2-硒代苯基取代基以及中空金纳米壳(HGN)表面。这1280个SERS纳米标签是独特的,因为它们具有多个可用的硫族元素原子,这些元素可以使它们强烈吸附在HGN的金表面上,从而在此长激发波长下产生出色的SERS信号。观察到皮摩尔的检测限(LOD),并通过主成分分析鉴定了该文库的各个报告基因,并根据其独特的结构和SERS光谱对其进行了分类。

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