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Molecular Depth Profiling And Imaging Using Cluster Ion Beams With Femtosecond Laser Postionization

机译:飞秒激光正离子化的簇离子束分子深度分析和成像。

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The emergence of cluster ion sources as viable SIMS probes has opened new possibilities for detection of neutral molecules by laser postionization. Previous studies have shown that with atomic bombardment multiphoton ionization using high-power femtosecond pulses leads to photofragmentation. The large amount of photofragmentation can be mostly attributed to high amounts of internal energy imparted to the sputtered molecules during the desorption process. Several pieces of preliminary data suggest that molecules subjected to cluster beam bombardment are desorbed with lower internal energies than those subjected to atomic beam bombardment. Lower energy molecules may then be less likely to photodissociate creating less photofragments in the laser postionization spectra. Here we present data taken from coronene films prepared by physical vapor deposition comparing a 40 keV C_(60)~1 ion source with a 20 keV Au~+ ion source, which supports this hypothesis. Furthermore, the depth profiling capabilities of cluster beams may be combined with laser postionization to obtain molecular depth profiles by monitoring the neutral flux. In addition, imaging and depth profiling may be combined with atomic force microscopy (AFM) to provide three-dimensional molecular images.
机译:簇离子源作为可行的SIMS探针的出现为通过激光后电离检测中性分子提供了新的可能性。先前的研究表明,在原子轰击下,使用高功率飞秒脉冲的多光子电离会导致光碎裂。大量的光碎裂主要归因于在解吸过程中赋予溅射分子的大量内部能量。几项初步数据表明,经受簇束轰击的分子比经受原子束轰击的分子具有更低的内能解吸。然后,能量较低的分子可能不太可能发生光解离,从而在激光后离子化光谱中产生较少的光碎片。在这里,我们提供了通过物理气相沉积制备的冠膜的数据,该膜将40 keV C_(60)〜1离子源与20 keV Au〜+离子源进行了比较,这支持了这一假设。此外,簇束的深度轮廓分析能力可以与激光后离子化相结合,以通过监测中性通量来获得分子深度轮廓。此外,成像和深度分析可以与原子力显微镜(AFM)结合使用,以提供三维分子图像。

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