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Advances in threshold photoelectron spectroscopy (TPES) and threshold photoelectron photoion coincidence (TPEPICO)

机译:阈值光电子谱(TPE)和阈值光电子光相符合(TPEPICO)的进步

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摘要

The history and evolution of molecular threshold photoelectron spectroscopy and threshold photoelectron photoion coincidence spectroscopy (TPEPICO) over the last fifty years are reviewed. Emphasis is placed on instrumentation and the extraction of dynamical information about energy selected ion dissociation, not on the detailed spectroscopy of certain molecules. Three important advances have expanded greatly the power of the technique, and permitted its implementation on modern synchrotron radiation beamlines. The use of velocity focusing of threshold electrons onto an imaging detector in the 1990s simultaneously improved the sensitivity and electron energy resolution, and also facilitated the subtraction of hot electron background in both threshold electron spectroscopy and TPEPICO studies. The development of multi-start multi-stop collection detectors for both electrons and ions in the 2000s permitted the use of the full intensity of modern synchrotron radiation thereby greatly improving the signal-to-noise ratio. Finally, recent developments involving imaging electrons in a range of energies as well as ions onto separate position-sensitive detectors has further improved the collection sensitivity so that low density samples found in a variety of studies can be investigated. As a result, photoelectron photoion coincidence spectroscopy is now well positioned to address a range of challenging problems that include the quantitative determination of compositions of isomer mixtures, and the detection and spectroscopy of free radicals produced in pyrolysis or discharge sources as well as in combustion studies.
机译:综述了分子阈值光电子能谱和阈值光电子光相结合光谱(TPEPICO)的历史和演化进行了综述。重点放在仪器上和关于能量所选离子解离的动态信息的提取,而不是在某些分子的详细光谱上。三个重要的进展大大扩大了该技术的力量,并允许在现代同步辐射辐射线线上实施。使用阈值电子在20世纪90年代中的成像检测器上的速度聚焦同时提高了灵敏度和电子能量分辨率,并且还促进了阈值电子光谱和TPEPICO研究中的热电子背景的减法。 2000年代电子和离子的多启动多停机收集探测器的开发允许使用现代同步辐射的全强度,从而大大提高了信噪比。最后,涉及在一系列能量中的成像电子以及离子在单独的位置敏感探测器上进行成像电子的开发具有进一步提高了收集敏感性,从而可以研究各种研究中发现的低密度样本。结果,光电子电离光谱光谱透视现在定位以解决一系列挑战性问题,包括定量测定异构体混合物的组合物,以及在热解或排出来源中产生的自由基的检测和光谱以及燃烧研究。

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