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首页> 外文期刊>Journal of physical chemistry letters >Ultrafast Time-Resolved X-ray Absorption Spectroscopy of Ferrioxalate Photolysis with a Laser Plasma X-ray Source and Microcalorimeter Array
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Ultrafast Time-Resolved X-ray Absorption Spectroscopy of Ferrioxalate Photolysis with a Laser Plasma X-ray Source and Microcalorimeter Array

机译:用激光等离子体X射线源和微量高压仪阵列的晶状体光解的超快时间分辨X射线吸收光谱

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摘要

The detailed pathways of photoactivity on ultrafast time scales are a topic of contemporary interest. Using a 'tabletop apparatus based on a laser plasma X-ray source and an array of cryogenic microcalorimeter X-ray detectors, we measured a transient X-ray absorption spectrum during the ferrioxalate photoreduction reaction. With these high-efficiency detectors, we observe the Fe K edge move to lower energies and the amplitude of the extended X-ray absorption fine structure reduce, consistent with a photoreduction mechanism in which electron transfer precedes disassociation. These results are compared to previously published transient X-ray absorption measurements on the same reaction and found to be consistent with the results from Ogi et al. and inconsistent with the results of Chen et al. (Ogi, Y.; et al. Struct. Dyn. 2015, 2, 034901; Chen, J.; Zhang, H.; Tomov, I. V.; Ding, X.; Rentzepis, P. M. Chem. Phys. Lett. 2007, 437, 50-55). We provide quantitative limits on the Fe-O bond length change. Finally, we review potential improvements to our measurement technique, highlighting the future potential of tabletop X-ray science using microcalorimeter sensors.
机译:超快时间尺度的光释放的详细途径是当代兴趣的主题。使用基于激光等离子体X射线源的“桌面装置和低温微量仪X射线探测器阵列”,我们在叔丙酸盐盐光电反应过程中测量瞬态X射线吸收光谱。利用这些高效探测器,我们观察到Fe K边缘移动到较低的能量,并且延伸的X射线吸收细结构的幅度减少,与电子转移之前的光电导通机理一致。将这些结果与同一反应的先前公布的瞬时X射线吸收测量进行了比较,发现与OGI等人的结果一致。与Chen等人的结果不一致。 (ogi,y .; et al。struct。dyn。2015,2,034901;陈,j .;张,h ;; tomov,iv; ding,x .; entzepis,pm chem。lett。2007,437 ,50-55)。我们为FE-O键长度变化提供定量限制。最后,我们审查了对我们的测量技术的潜在改进,突出了使用微量微量仪传感器的桌面X射线科学的未来潜力。

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