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关于稀有气体诱导的CuO分子系间窜越:固态氖中CuO(Ng)n(Ng = Ar、Kr、Xe;n = 1、2、3、4)配合物的实验与理论研究

On the noble-gas-induced intersystem crossing for the CUO molecule: experimental and theoretical investigations of CUO(Ng)n (Ng = Ar, Kr, Xe; n = 1, 2, 3, 4) complexes in solid neon.

作者信息

Liang Binyong, Andrews Lester, Li Jun, Bursten Bruce E

机构信息

Department of Chemistry, University of Virginia, Charlottesville, Virginia 22904-4319, USA.

出版信息

Inorg Chem. 2004 Feb 9;43(3):882-94. doi: 10.1021/ic035206q.

Abstract

Uranium atoms excited by laser ablation react with CO in excess neon to produce the novel CUO molecule, which forms distinct Ng complexes (Ng = Ar, Kr, Xe) when the heavier noble gases are added. The CUO(Ng) complexes are identified through CO isotopic and Ng substitution on the neon matrix infrared spectra and by comparison to DFT frequency calculations. The U-C and U-O stretching frequencies of CUO(Ng) complexes are slightly red-shifted from frequencies for the (1)Sigma(+) CUO ground state, which identifies singlet ground state CUO(Ng) complexes. In solid neon the CUO molecule is also a complex CUO(Ne)(n), and the CUO(Ne)(n-1)(Ng) complexes are likewise specified. The next singlet CUO(Ne)(x)(Ng)(2) complexes in excess neon follow in like manner. However, the higher CUO(Ne)(x)(Ng)(n) complex (n = 3, 4) stretching modes approach pure argon matrix CUO(Ar)(n) values and isotopic behavior, which are characterized as triplet ground state complexes by DFT frequency calculations. This work suggests that the singlet-triplet crossing occurs with 3 Ar, 3 Kr, or 4 Xe and a balance of Ne atoms coordinated to CUO in the neon matrix host.

摘要

通过激光烧蚀激发的铀原子与过量氖气中的一氧化碳反应生成新型的CUO分子,当加入较重的惰性气体时,该分子会形成独特的Ng配合物(Ng = Ar、Kr、Xe)。通过一氧化碳同位素和氖基质红外光谱上的Ng取代,并与密度泛函理论(DFT)频率计算结果进行比较,来识别CUO(Ng)配合物。CUO(Ng)配合物的U - C和U - O伸缩频率相对于(1)Σ⁺ CUO基态的频率略有红移,这表明是单重态基态的CUO(Ng)配合物。在固态氖中,CUO分子也是一种配合物CUO(Ne)ₙ,同样也确定了CUO(Ne)ₙ₋₁(Ng)配合物。在过量氖气中,接下来的单重态CUO(Ne)ₓ(Ng)₂配合物也是如此。然而,较高的CUO(Ne)ₓ(Ng)ₙ配合物(n = 3、4)的伸缩模式接近纯氩基质中的CUO(Ar)ₙ值和同位素行为,根据DFT频率计算,这些被表征为三重态基态配合物。这项工作表明,单重态 - 三重态交叉发生在有3个Ar、3个Kr或4个Xe以及在氖基质主体中与CUO配位的Ne原子达到平衡的情况下。

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