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首页> 外文期刊>Atmospheric chemistry and physics >Electrospray surface-enhanced Raman spectroscopy (ES-SERS) for probing surface chemical compositions of atmospherically relevant particles
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Electrospray surface-enhanced Raman spectroscopy (ES-SERS) for probing surface chemical compositions of atmospherically relevant particles

机译:电喷雾表面增强拉曼光谱(ES-SERS)用于探测大气相关颗粒的表面化学成分

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摘要

We present electrospray surface-enhanced Raman spectroscopy (ES-SERS) as a new approach to measuring the surface chemical compositions of atmospherically relevant particles. The surface-sensitive SERS is realized by electrospraying Ag nanoparticle aerosols over analyte particles. Spectral features at v(SO42-), v(C H) and v(O H) modes were observed from the normal Raman and SERS measurements of laboratory-generated supermicron particles of ammonium sulfate (AS), AS mixed with succinic acid (AS / SA) and AS mixed with sucrose (AS / sucrose). SERS measurements showed strong interaction (or chemisorption) between Ag nanoparticles and surface aqueous sulfate, [SO42- [SO42-] with [SO42-]AS / sucrose > [SO42- JAS / SA > Lok-, JAS " Enhanced spectra of the solid AS and AS / SA particles revealed the formation of surface-adsorbed water on their surfaces at 60 % relative humidity. These observations of surface aqueous sulfate and adsorbed water demonstrate a possible role of surface-adsorbed water in facilitating the dissolution of sulfate from the bulk phase into its water layer(s). Submicron ambient aerosol particles collected in Hong Kong exhibited non-enhanced features of black carbon and enhanced features of sulfate and organic matter (carbonyl group), indicating an enrichment of sulfate and organic matter on the particle surface.
机译:我们将电喷雾表面增强拉曼光谱(ES-SERS)作为测量大气相关颗粒的表面化学成分的新方法。表面敏感的SER通​​过电喷雾AG纳米粒子气溶胶在分析物颗粒上实现。从正常拉曼和硫酸铵(AS)的实验室产生的超要颗粒的正常拉曼和SERS测量值,与琥珀酸(如/ sa)混合(如/ sa )和与蔗糖(如/蔗糖)混合。 SERs测量显示Ag纳米颗粒和表面含水水溶液之间的强相互作用(或化学),[SO42-]用[SO42-]作为/蔗糖> [SO42-JAS / SA> Lok-,JAS的增强的固体光谱AS / SA颗粒在其表面上形成表面吸附的水在60%相对湿度下。这些表面含水水溶液和吸附的水的观察结果表明了表面吸附水在促进散装中溶解硫酸盐的可能作用相位进入其水层。香港收集的亚微米环境气溶胶颗粒具有非增强的黑碳特征,硫酸盐和有机物质(羰基)的增强特征,表明颗粒表面上的硫酸盐和有机物质富集。

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