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首页> 外文期刊>The Journal of Chemical Physics >Resonant two-photon ionization spectroscopy of jet-cooled UN: Determination of the ground state
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Resonant two-photon ionization spectroscopy of jet-cooled UN: Determination of the ground state

机译:喷射冷却UN的共振双光子电离光谱:基态的确定

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The optical transitions of supersonically cooled uranium nitride (UN) have been investigated in the range from 19 200 to 23 900 cm~(-1) using resonant two-photon ionization spectroscopy. A large number of bands have been observed, of which seven have been rotationally resolved and analyzed. All are found to arise from the same state, which is presumably the ground state of the molecule. From the analysis of the bands, the ground state has Ω = 3.5, with a bond length of 1.7650(12) ?. Comparisons to the known isovalent molecules are made, and the variations in ground state configuration are explained in terms of the configurational reordering that occurs with changes in the nuclear and ligand charges. It is concluded that the UN molecule is best considered as a U~3+N~(3-) species in which the closed shell nitride ligand interacts with a U~(3+) ion. The ground state of the molecule derives from a U~(3+) ion in its 7s~15f ~2 atomic configuration.
机译:利用共振双光子电离光谱技术研究了超声冷却的氮化铀(UN)的光学跃迁,其范围为19 200至23 900 cm〜(-1)。已经观察到大量的带,其中七个已经被旋转解析和分析。发现所有分子都来自同一状态,大概是分子的基态。从频带分析可知,基态的Ω= 3.5,键长为1.7650(12)Ω。与已知的等价分子进行比较,并根据随着核和配体电荷的变化而发生的构型重排来解释基态构型的变化。结论是,最好将UN分子视为U〜3 + N〜(3-)物种,其中闭壳氮化物配体与U〜(3+)离子相互作用。分子的基态源自其7s〜15f〜2原子构型的U〜(3+)离子。

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