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Probing surfaces of atmospherically relevant organic particles by easy ambient sonic-spray ionization mass spectrometry (EASI-MS)

机译:通过简易的环境声喷电离质谱(EASI-MS)探测与大气相关的有机颗粒表面

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Both ambient and laboratory-generated particles can have a surface composition different from the bulk, but there are currently few analytical techniques available to probe these differences. Easy ambient sonic-spray ionization mass spectrometry (EASI-MS) was applied to solid, laboratory-generated particles with core–shell morphologies formed from a variety of dicarboxylic acids. The soft ionization facilitated parent peak detection for the two compounds, from which the depth probed could be determined from the relative signal intensities. Two different configurations of a custom-made nebulizer are reported that yield different probe depths. In the “orthogonal mode,” with the nebulizer ~10 centimeters away from the particle stream and at a 90° angle to the MS inlet, evaporation of the nebulizer droplets forms ions before interaction with the particles. The probe depth for orthogonal mode EASI-MS is shown to be 2–4 nm in these particle systems. In the “droplet mode”, the nebulizer and particle streams are in close proximity to each other and the MS inlet so that the particles interact with charged liquid droplets. This configuration resulted in full dissolution of the particles and gives particle composition similar to that from collection on filters and extraction of the particles (bulk). These studies establish that EASI-MS is a promising technique for probing the chemical structures of inhomogeneous airborne organic particles.
机译:环境颗粒和实验室生成的颗粒的表面组成都可能与体积不同,但是目前很少有分析技术可用来探测这些差异。简易的环境声波喷雾电离质谱(EASI-MS)被应用到实验室产生的固体颗粒上,该颗粒具有由多种二元羧酸形成的核-壳形态。软电离有助于检测这两种化合物的母峰,从中可以根据相对信号强度确定探测深度。据报道,定制雾化器的两种不同配置可产生不同的探头深度。在“正交模式”下,雾化器距离粒子流约10厘米,与MS入口呈90°角,雾化器液滴的蒸发在与粒子相互作用之前会形成离子。在这些粒子系统中,正交模式EASI-MS的探针深度显示为2-4 nm。在“液滴模式”下,雾化器和粒子流彼此非常靠近,并且MS入口很近,因此粒子与带电液滴相互作用。这种构造导致颗粒完全溶解,并提供与通过过滤器收集和提取颗粒(大块)相似的颗粒组成。这些研究表明,EASI-MS是探测非均质机载有机颗粒化学结构的有前途的技术。

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