Leinders Gregory, Bes René, Pakarinen Janne, Kvashnina Kristina, Verwerft Marc
Belgian Nuclear Research Centre (SCK·CEN), Institute for Nuclear Materials Science , Boeretang 200, B-2400 Mol, Belgium.
Department of Applied Physics, Aalto University , P.O. Box 14100, FI-00076 Aalto, Finland.
Inorg Chem. 2017 Jun 19;56(12):6784-6787. doi: 10.1021/acs.inorgchem.7b01001. Epub 2017 Jun 7.
A fundamental question concerning the chemical state of uranium in the binary oxides UO, UO, UO, UO, and UO is addressed. By utilizing high energy resolution fluorescence detection X-ray absorption near edge spectroscopy (HERFD-XANES) at the uranium M edge, a novel technique in the tender X-ray region, we obtain the distribution of formal oxidation states in the mixed-valence oxides UO, UO, and UO. Moreover, we clearly identify a pivot from U(IV)-U(V) to U(V)-U(VI) charge compensation, corresponding with transition from a fluorite-type structure (UO) to a layered structure (UO). Such physicochemical properties are of interest to a broad audience of researchers and engineers active in domains ranging from fundamental physics to nuclear industry and environmental science.
本文探讨了关于二元氧化物UO、UO、UO、UO和UO中铀化学状态的一个基本问题。通过利用在铀M边进行的高能量分辨率荧光检测X射线吸收近边光谱(HERFD-XANES)这一软X射线区域的新技术,我们获得了混合价氧化物UO、UO和UO中形式氧化态的分布。此外,我们明确识别出从U(IV)-U(V)到U(V)-U(VI)电荷补偿的转变,这与从萤石型结构(UO)到层状结构(UO)的转变相对应。这种物理化学性质对于从基础物理到核工业和环境科学等广泛领域的研究人员和工程师来说都具有吸引力。