International Laser Centre Ilkovicova 3, 84104, Bratislava, Slovak Republic.
Comenius University Mlynska dolina, 84215, Bratislava, Slovak Republic.
Sci Rep. 2017 Jul 20;7(1):5953. doi: 10.1038/s41598-017-06562-9.
Secondary ion mass spectrometry is an excellent technique of analytical chemistry, where primary ions sputter a solid sample generating the secondary ions which are determined. Although the ion yield is inherently low, it can be enhanced by using a post-ionization of sputtered neutral species. Our novel approach integrates this technique with a near infrared femtosecond laser post-ionization based on an adaptive control through a laser pulse shaper. The shaping of the laser pulse provides adaptive control to select a mass peak of interest and to enhance this peak intensity. Versatility is confirmed by optimizing the ion yield for different molecules (tryptophan, anthracene, polyethylene, and oxalic acid) with focus on parent ion enhancement, fragmentation process, sublimation effect, and excited secondary species. This proof-of-concept experiment provides not only a nonspecific increase of the overall ion yield, but also the selection of specific secondary species and the adaptive enhancement of their intensities on the order of 100, potentially simplifying data interpretation. Such tailored spectra might advance the (secondary ion) mass spectrometry to new capabilities.
二次离子质谱是分析化学中的一种出色技术,其中初级离子溅射固体样品产生二次离子,然后对这些二次离子进行测定。尽管离子产率本质上很低,但可以通过溅射中性物质的后离子化来增强。我们的新方法将该技术与基于自适应控制的近红外飞秒激光后离子化相结合,通过激光脉冲整形器实现自适应控制。激光脉冲的整形提供了自适应控制,可以选择感兴趣的质量峰,并增强该峰的强度。通过优化不同分子(色氨酸、蒽、聚乙烯和草酸)的离子产率,证实了该方法的多功能性,重点是增强母离子、碎裂过程、升华效应和激发的次级物质。该概念验证实验不仅提供了整体离子产率的非特异性增加,而且还提供了特定次级物质的选择以及它们强度的自适应增强,增强幅度约为 100 倍,这可能简化了数据解释。这种定制的光谱可能会使(二次离子)质谱技术获得新的能力。