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亚硝酰铜基态和低电子态的吸收光谱:稀有气体基质隔离研究

Absorption spectra of ground-state and low-lying electronic States of copper nitrosyl: a rare gas matrix isolation study.

作者信息

Krim Lahouari, Wang Xuefeng, Manceron Laurent, Andrews Lester

机构信息

Université Pierre et Marie Curie-Paris 6, CNRS UMR 7075, LADIR, case 49, 4 place Jussieu 75252 Paris, France.

出版信息

J Phys Chem A. 2005 Nov 17;109(45):10264-72. doi: 10.1021/jp053778l.

DOI:10.1021/jp053778l
PMID:16833320
Abstract

The reaction of ground-state Cu atoms with NO during condensation in solid argon, neon, and binary argon/neon mixtures has been reinvestigated. In addition to the ground-state already characterized in rare gas matrixes by its nu1 mode in reactions of laser-ablated Cu with nitric oxide, another very low lying electronic state is observed for CuNO in solid argon. Photoconversion and equilibrium processes are observed between the two lowest lying electronic states following photoexcitations to second and third excited states in the visible and near-infrared. The electronic spectrum of the CuNO complex was also recorded to understand the photoconversion processes. In solid neon, only the ground state (probably 1A') and the second and third excited states are observed. This suggests that interaction with the argon cage stabilizes the triplet state to make 1A' and 3A' ' states almost isoenergetic in solid argon. On the basis of previous predictions founded on DFT calculations on the very low lying 1A' and 3A' ', a mechanism is proposed, involving the singlet-triplet state manifolds. For these two lower and one higher electronic states, 14N/15N, 16O/18O, and 63Cu/65Cu isotopic data on nu1, nu2, and nu3 have been measured. On the basis of harmonic force-field calculations and relative intensities in the vibronic progressions, some structural parameters are estimated. The molecule is bent in all electronic states, with Cu-N-O bond angles varying slightly around 130 +/- 10 degrees , but the Cu-N bond force constants are substantially different, denoting larger differences in bond lengths.

摘要

对基态铜原子在固态氩、氖以及氩/氖二元混合物中冷凝时与一氧化氮的反应进行了重新研究。除了在稀有气体基质中通过激光烧蚀的铜与一氧化氮反应的ν1模式已表征的基态外,在固态氩中还观察到CuNO的另一个非常低的电子态。在可见光和近红外光激发到第二和第三激发态后,观察到两个最低电子态之间的光转换和平衡过程。还记录了CuNO配合物的电子光谱以了解光转换过程。在固态氖中,仅观察到基态(可能是1A')以及第二和第三激发态。这表明与氩笼的相互作用使三重态稳定,使得在固态氩中1A'和3A''态几乎等能。基于先前对非常低的1A'和3A''态进行密度泛函理论计算得出的预测,提出了一种涉及单重态 - 三重态流形的机制。对于这两个较低和一个较高的电子态,已测量了ν1、ν2和ν3的14N/15N、16O/18O和63Cu/65Cu同位素数据。基于简谐力场计算和振动电子跃迁中的相对强度,估计了一些结构参数。该分子在所有电子态中均呈弯曲状,Cu - N - O键角在130±10度左右略有变化,但Cu - N键力常数有很大差异,这表明键长存在较大差异。

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