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The thermal chemistry of saturated layers of acetylene and ethylene on Ni(100) studied by in situ synchrotron x-ray photoelectron spectroscopy

机译:原位同步加速器X射线光电子能谱研究Ni(100)上乙炔和乙烯饱和层的热化学

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摘要

Temperature-programmed x-ray photoelectron spectroscopy was used to study the thermal chemistry of acetylene (C_2H_2) and ethylene (C_2H_4) on Ni(100) in the temperature range 90-530 K. The use of a third generation synchrotron light source facilitated the measurement of high-resolution C1s photoelectron spectra within a few seconds, approaching the ideal of real-time analysis. In a quantitative and quasi-continuous manner, the thermal dehydrogenation pathways are followed. For the acetylene decomposition, acetylide (CCH) and methylidyne (CH) are confirmed as intermediates. For the dehydrogenation of ethylene, a vinyl species (C_2H_3) is observed. Using the fingerprint capabilities of x-ray photoelectron spectroscopy, acetylene can be identified as the subsequent dehydrogenation product. Upon further heating, acetylide and methylidyne are successively formed on the surface, as in the decomposition experimental starting with acetylene adsorbed at 100 K. For both systems carbidic carbon is formed as the final dehydrogenation product, although with different transition temperatures. Species identification is based on observed vibrational fine structure data and correlation of core-level binding energies with previous literature.
机译:使用温度编程的X射线光电子能谱研究了在90-530 K的温度范围内,乙炔(C_2H_2)和乙烯(C_2H_4)在Ni(100)上的热化学性质。第三代同步加速器光源的使用促进了在几秒钟内即可测量高分辨率C1s光电子光谱,接近实时分析的理想选择。以定量和准连续的方式遵循热脱氢途径。对于乙炔分解,已确认乙炔(CCH)和亚甲基(CH)为中间体。对于乙烯的脱氢,观察到乙烯基物质(C_2H_3)。使用X射线光电子能谱的指纹功能,可以将乙炔鉴定为后续的脱氢产物。进一步加热后,表面上会依次形成乙炔和亚甲基,就像在分解实验中一样,乙炔在100 K时开始吸附。对于这两种体系,尽管最终碳氢化合物的转变温度不同,但形成的碳还是最终的脱氢产物。物种鉴定是基于观察到的精细振动结构数据以及核心水平结合能与先前文献的相关性。

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