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首页> 外文期刊>Physical chemistry chemical physics: PCCP >First steps in combining modulation excitation spectroscopy with synchronous dispersive EXAFS/DRIFTS/mass spectrometry for in situ time resolved study of heterogeneous catalysts
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First steps in combining modulation excitation spectroscopy with synchronous dispersive EXAFS/DRIFTS/mass spectrometry for in situ time resolved study of heterogeneous catalysts

机译:将调制激发光谱与同步分散EXAFS / DRIFTS /质谱联用进行非均相催化剂原位时间解析研究的第一步

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摘要

The synchronous combination of time resolved (energy dispersive) EXAFS, diffuse reflectance infrared spectroscopy (DRIFTS), and mass spectrometry (MS), applied within the general framework of concentration modulation spectroscopy, is demonstrated for in situ and time-resolved study of the behaviour of Rh/Al2O3 and Pd/Al2O3 catalysts during CO/NO redox cycling at 573 K. We show that by applying a phase sensitive detection technique the quality of information arising from the experiment is significantly improved. Moreover, in the case of the dispersive EXAFS the acuity of this technique is greatly enhanced and a surface sensitivity in the normally bulk sensitive EXAFS measurement can be induced. Lastly we apply this approach to a system (0.3 wt% Rh/Al2O3) that cannot normally be studied in any meaningful way with transmission based and highly time resolved EXAFS, and show that this method may provide a novel experimental window through which it is possible to restore highly time resolved structural-kinetic information from previously intractable systems.
机译:时间分辨(能量分散)EXAFS,漫反射红外光谱(DRIFTS)和质谱(MS)在浓度调制光谱的一般框架内的同步结合,被用于行为的现场和时间分辨研究。在573 K的CO / NO氧化还原循环过程中对Rh / Al2O3和Pd / Al2O3催化剂的分析。我们表明,通过使用相敏检测技术,可以显着提高实验产生的信息质量。此外,在分散EXAFS的情况下,该技术的敏锐度大大提高,并且在通常的体积敏感EXAFS测量中可引起表面灵敏度。最后,我们将这种方法应用于系统(0.3 wt%Rh / Al2O3),该系统通常无法以任何有意义的方式使用基于透射的且时间分辨力强的EXAFS进行研究,并表明该方法可以提供新颖的实验窗口,通过该窗口可以实现从以前难处理的系统中恢复高度解析的结构动力学信息。

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