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Direct observation of pure pentavalent uranium in U2O5 thin films by high resolution photoemission spectroscopy

机译:高分辨率光发射光谱法直接观察U2O5薄膜中的纯五价铀

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摘要

Thin films of the elusive intermediate uranium oxide U2O5 have been prepared by exposing UO3 precursor multilayers to atomic hydrogen. Electron photoemission spectra measured about the uranium 4f core-level doublet contain sharp satellites separated by 7.9(1) eV from the 4f main lines, whilst satellites characteristics of the U(IV) and U(VI) oxidation states, expected respectively at 6.9(1) and 9.7(1) eV from the main 4f lines, are absent. This shows that uranium ions in the films are in a pure pentavalent oxidation state, in contrast to previous investigations of binary oxides claiming that U(V) occurs only as a metastable intermediate state coexisting with U(IV) and U(VI) species. The ratio between the 5f valence band and 4f core-level uranium photoemission intensities decreases by about 50% from UO2 to U2O5, which is consistent with the 5f 2 (UO2) and 5f 1 (U2O5) electronic configurations of the initial state. Our studies conclusively establish the stability of uranium pentoxide.
机译:通过将UO3前驱体多层暴露在原子氢下,制备了难以捉摸的中间氧化铀U2O5薄膜。在铀4f核能级双重态附近测得的电子光发射光谱包含与4f主线相隔7.9(1)eV的尖锐卫星,而预期U(IV)和U(VI)氧化态的卫星特征分别在6.9(缺少主要4f线的1)和9.7(1)eV。这表明薄膜中的铀离子处于纯五价氧化态,这与先前对二元氧化物的研究相反,后者声称U(V)仅作为与U(IV)和U(VI)物种共存的亚稳态中间态而出现。从UO2到U2O5,5f价带与4f核心能级铀的光发射强度之比降低了约50%,与5f 2 (UO2)和5f 1 (U2O5)处于初始状态的电子配置。我们的研究最终确定了五氧化铀的稳定性。

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