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An electrochemical surface-enhanced Raman spectroscopy approach to anthrax detection

机译:电化学表面增强拉曼光谱法检测炭疽

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Metal film over nanosphere (MFON) electrodes are excellent substrates for surface-enhanced Raman scattering (SERS) spectroscopy. These surfaces are produced by vapor deposition of a metal film over nanospheres that are assembled in a hexagonally close packed arrangement. The efficiency and reproducibility of AgFON electrode as SERS substrates are confirmed by the repeatability of the electrochemical surface enhanced Raman scattering spectra of pyridine and the Ru(bpy)_3~(3+)/Ru(bpy)_3~(2+) complexes adsorbed on AgFON electrodes. The Raman signal for AgFON electrodes is observed to be extremely stable even at extremely negative potentials in both aqueous and nonaqueous electrolytes. Recent reports have indicated that SERS enhancement factors of up to 14 orders of magnitude can be achieved, providing the sensitivity requisite for ultra trace level detection of target analytes. For this reason, we are developing a method for bacterial endospore SERS detection based on the endospores marker -- dipicolinic acid (DPA). The SERS spectra of dipicolinic acid in aqueous solutions are reported. The dipicolinate vibrational features could be observed in the SERS spectra at the concentration as low as 8 x 10~(-5) M in 5 minutes. These limits of detection are entirely controlled by the thermodynamics and kinetics of DPA binding to the AgFON surface.
机译:纳米球上的金属膜(MFON)电极是用于表面增强拉曼散射(SERS)光谱的出色基材。这些表面是通过将金属薄膜气相沉积在以六角形紧密堆积排列方式组装的纳米球上产生的。吡啶和Ru(bpy)_3〜(3 +)/ Ru(bpy)_3〜(2+)络合物的电化学表面增强拉曼散射光谱的可重复性证实了AgFON电极作为SERS衬底的效率和可重复性在AgFON电极上。观察到AgFON电极的拉曼信号即使在水性和非水性电解质中都处于极负电势时也极其稳定。最近的报告表明,可以实现高达14个数量级的SERS增强因子,为目标分析物的超痕量检测提供了必要的灵敏度。因此,我们正在开发一种基于内生孢子标记-二吡啶甲酸(DPA)的细菌内生孢子SERS检测方法。报道了二吡啶甲酸在水溶液中的SERS光谱。在5分钟内,在SERS光谱中低至8 x 10〜(-5)M的浓度就可以观察到二吡啶甲酸的振动特征。这些检测极限完全由DPA结合到AgFON表面的热力学和动力学控制。

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