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The Use of Nanomaterials for Mass Spectrometry Can Be Uplifting for Analyte Detection

机译:用于质谱法的纳米材料可以升高用于分析物检测

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Surface-Assisted Laser Desorption Ionization (SALDI) involves desorbing and ionizing analyte molecules from a nanoporous substrate by laser irradiation for detection in a mass spectrometer. In this work experiments were designed to better understand the mechanisms governing desorption and ionization for Desorption Ionization On Silicon (DIOS), a variant of SALDI which uses porous silicon (pSi) as a substrate. Experiments are also reported for other nanoporous semiconducting materials (WO3, TiO2) which exhibit very similar behaviors; specifically, that both protonated analyte ions and analyte radical cations can be generated with relative intensities that depend on the position of the incident laser focus relative to substrate surface. While thermal desorption appears to be important, preliminary evidence suggests that the ionization mechanism leading to protonated analytes involves in part electrons and holes formed when photoexciting the substrate above its electronic band gap, and the presence of defect states within the band gap. Radical cation formation appears to be driven in part by electron transfer due to the large electron affinity of each substrate used in this work.
机译:表面辅助激光解吸电离(SALDI)涉及通过激光照射在质谱仪中检测从纳米多孔基质中解吸和电离分析物分子。在该工作实验中,设计以更好地了解对硅(DIOS)上解吸电离的机制,用于使用多孔硅(PSI)作为基材的SALDI的变体。还报告了其他纳米多孔半导体材料(WO3,TiO 2)的实验,其表现出非常相似的行为;具体地,质子化分析物离子和分析物自由基阳离子可以采用相对强度产生,这取决于入射激光聚焦相对于基板表面的位置。虽然热解吸似乎是重要的,但是初步证据表明,导致质子化分析物的电离机制涉及在其电子带隙中高于其电子带隙中的基板的部分电子和孔中,以及在带隙内的缺陷状态存在。由于该工作中使用的每个基板的大的电子亲和力,似乎通过电子传递部分地通过电子传递驱动自由基阳离子。

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