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On-line monitoring of airborne chemistry in levitated nanodroplets: In situ synthesis and application of SERS-active Ag-sols for trace analysis by FT-Raman spectroscopy

机译:悬浮纳米液滴中空气中化学物质的在线监测:SERS活性银溶胶的原位合成和应用,用于FT拉曼光谱分析

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We report a new strategy for on-fine monitoring of chemical reactions in ultrasonically levitated, nanoliter-sized droplets by Raman spectroscopy. A flow-through microdispenser connected to an automated flow injection system was used to dose picoliter droplets into the node of an ultrasonic trap. Taking advantage of the flow-through characteristics of the microdispenser and the versatility of the automated flow system, a well-defined sequence of reagents could be injected via the microdispenser into the levitated droplet placed in the focus of the collection optics of the Fourier transform Raman spectrometer. In that way, chemical reactions could be carried out and monitored on-line. The developed system was used for fast, reproducible, in situ synthesis of a highly active surface enhanced Raman scattering (SERS) sol resulting from the reduction of silver nitrate with hydroxylamine hydrochloride in basic conditions. With this chemical system, SERS substrate preparation could be achieved at room temperature and in short time. The in situ prepared silver sol was used for trace analysis of several organic test molecules that were injected into the levitated SERS-active droplet again using the microdispenser. The concentration dependence of the SERS spectra was studied using 9-aminoacridine, revealing that down to the femtogram region high-quality SERS spectra could be obtained. Additionally, SERS spectra of 6-mercaptopurine, thiamine, and acridine were recorded in the levitated drop as well. [References: 29]
机译:我们报告了一种新的策略,用于通过拉曼光谱对超声悬浮的纳升大小的液滴中的化学反应进行精细监控。连接到自动流动注射系统的流通微分配器用于将皮微升液滴计量入超声阱的节点。利用微分配器的流通特性和自动流系统的多功能性,可以通过微分配器将定义明确的试剂序列注入悬浮的液滴中,该液滴放置在傅立叶变换拉曼光学显微镜的焦点上光谱仪。这样,化学反应可以在线进行和监测。所开发的系统用于快速,可重现,原位合成高活性表面增强拉曼散射(SERS)溶胶,这种溶胶是通过在碱性条件下用盐酸羟胺还原硝酸银而得到的。使用该化学系统,可以在室温和短时间内完成SERS底物的制备。原位制备的银溶胶用于痕量分析几种有机测试分子,使用微型分液器再次注入悬浮的SERS活性液滴中。使用9-氨基ac啶研究了SERS光谱的浓度依赖性,揭示了在飞克图范围内可以获得高质量的SERS光谱。另外,在悬浮液滴中还记录了6-巯基嘌呤,硫胺素和a啶的SERS光谱。 [参考:29]

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