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Electron yield soft X-ray photoabsorption spectroscopy under normal ambient-pressure conditions

机译:正常环境压力条件下的电子产量软X射线光吸收光谱

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摘要

Ambient-pressure soft X-ray photoabsorption spectroscopy (XAS) was demonstrated to be applicable to the chemical analysis of hydrated transition-metal compounds. For this purpose, even under ambient-pressure conditions, electron yield detection XAS (EY-XAS), based on a simple drain-current set-up, was used to overcome a weakness in fluorescence yield detection XAS (FY-XAS), which does not give a pure soft XAS. The feasibility of EY-XAS was investigated and it was clarified that the EY-XAS under ambient-pressure conditions corresponds to the mixed data of the total EY and conversion EY spectra. Normal ambient-pressure EY-XAS analysis was applied to anhydrous (CoCl2) and to hydrated (CoCl2·6H2O) cobalt chloride at the Co L 23-edge. The present measurements demonstrated the ability to unambiguously distinguish the different chemical states of cobalt ions, relying upon spectral differences that indicate octahedral/quasi-octahedral structural changes as a result of hydration/dehydration reactions.
机译:实验证明,环境压力软X射线光吸收光谱法(XAS)可用于水合过渡金属化合物的化学分析。为此,即使在环境压力条件下,也使用基于简单漏极电流设置的电子产率检测XAS(EY-XAS)来克服荧光产率检测XAS(FY-XAS)的缺点。没有给出纯软XAS。研究了EY-XAS的可行性,并阐明了EY-XAS在环境压力条件下对应于总EY光谱和EY转换光谱的混合数据。在Co L 23边缘将正常的环境压力EY-XAS分析应用于无水(CoCl2)和水合(CoCl2·6H2O)氯化钴。当前的测量结果证明了能够根据光谱差异明确区分钴离子的不同化学状态的能力,该光谱差异表明由于水合/脱水反应而导致的八面体/准八面体结构变化。

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