首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Selective surface-enhanced Raman scattering detection of Tabun, VX and Cyclosarin nerve agents using 4-pyridine amide oxime functionalized gold nanopillars
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Selective surface-enhanced Raman scattering detection of Tabun, VX and Cyclosarin nerve agents using 4-pyridine amide oxime functionalized gold nanopillars

机译:使用4-吡啶酰胺肟官能化金纳米粉蛋白,VX和环状神经剂的选择性表面增强拉曼散射检测

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摘要

We have earlier demonstrated sensitive detection of low the volatile nerve agents Tabun, Cyclosarin and VX by using handheld Raman instrumentation in conjunction with surface-enhanced Raman scattering (SERS) attained with gold and silver coated Si nanopillar substrates. In the present proof-of-concept study, the gold substrates chemically are functionalized to realize selectivity towards organophosphorus compounds (OPs) with high sensitivity. A potential capturer and reporter molecule, chemical nerve agent antidote, 4-pyridine amide oxime, is evaluated due to its high Raman cross section, high chemical affinity towards gold, and binding specificity to the target substances Tabun, VX and Cyclosarin via the oxime group. Upon selective and covalent binding, the SERS probe undergoes structural changes which are reflected in the spectral SERS responses, making it suitable for indirect monitoring of nerve agents in aqueous solution. With the probe attached to the hotspots of Au-coated Si nanopillars, the SERS signals distinctly discriminate between specific and non-specific analyte binding of Tabun, Cyclosarin and VX down to sub ppm levels. SERS spectrum of 4-PAO is measured after microliter drop coating of aqueous sample solution onto the functionalized substrates and subsequent water evaporation from surfaces. This binding assay is complemented by letting functionalized substrates being immersed into sample solutions 1 h before measuring. Binding specific SERS response decreases in following order: Tabun > VX > Cydosarin. Overall, the concept looks promising, as expected the candidate probe 4-PAO introduces selectivity to the nanopillar gold substrates without loss of sensitivity.
机译:我们早些时候已经通过使用手持式拉曼仪表与金和银涂覆的Si纳米纳米粉底物相结合的表面增强拉曼散射(SERS),迄今对低挥发性神经代理的敏感检测敏感检测较低的挥发性神经代理禁止型挥发性神经代理蛋白,环己烷素和VX。在目前的概念研究中,化学上的金基材被官能化以实现具有高灵敏度的有机磷化合物(OPS)的选择性。由于其高拉曼横截面,对金的高化学亲和力,并通过肟基,对靶物质蛋白,Vx和环球蛋白的高化学亲和力来评价潜在的捕获神经剂和报道分子,4-吡啶酰胺肟。 。在选择性和共价结合时,SERS探针经历结构变化,这些变化反映在光谱SERS反应中,使其适用于间接监测水溶液中的神经剂。通过附着在Au涂覆的Si纳米盖的热点上的探针,SERS信号明显地区分Tabun,环己烷蛋白和Vx的特异性和非特异性分析物结合至下PPM水平。在官能化基材上的微升水滴涂层后测量4-PAO的SERS光谱,并从表面蒸发水蒸发。通过使官能化底物浸入样品溶液之前,通过使官能化基材浸入测量之前的样品溶液中来补充该结合测定。绑定特异性SERS响应按以下顺序减少:Tabun> Vx> cydosarin。总的来说,概念看起来很有希望,正如预期的那样,候选探针4-PAO引入了对纳米池金基材的选择性而不会损失灵敏度。

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