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在固态氩中对LaCO、La2[η2(μ2-C,O)]和c-La2(μ-C)(μ-O)分子的红外光谱和密度泛函理论研究。

Infrared-spectroscopic and density-functional-theory investigations of the LaCO, La2[eta2(mu2-C,O)], and c-La2(mu-C)(mu-O) molecules in solid argon.

作者信息

Xu Qiang, Jiang Ling, Zou Ru-Qiang

机构信息

National Institute of Advanced Industrial Science and Technology (AIST), Ikeda, Osaka 563-8577, Japan.

出版信息

Chemistry. 2006 Apr 12;12(12):3226-32. doi: 10.1002/chem.200501027.

DOI:10.1002/chem.200501027
PMID:16456908
Abstract

Reactions of laser-ablated lanthanum atoms with CO molecules in solid argon have been studied. The neutral lanthanum monocarbonyl (LaCO), produced upon sample deposition at 7 K, exhibits a C-O stretching frequency of 1772.7 cm(-1); to the best of our knowledge this is the lowest yet observed for a terminal CO in a neutral metal-carbonyl molecule (MCO, M = metal atom), implying anomalously enhanced metal-to-CO back-bonding. The infrared (IR) absorption band at 1145.9 cm(-1) is assigned to the C-O stretching mode of the side-on-bonding CO in the La2[eta2(mu2-C,O)] molecule. This CO-activated molecule undergoes an UV/Vis-photoinduced rearrangement to the CO-dissociated molecule, c-La2(mu-C)(mu-O). Density functional theory (DFT) calculations have been performed on these molecules, the results of which lend strong support to the experimental assignments of the IR spectra. LaCO is predicted to have a quartet ground state, corresponding to a linear geometry. Its formation involves La 6s-->4f promotion, which increases the strength of La-CO bonding by decreasing the sigma repulsion and, remarkably, by increasing the La 5d and 4f-->CO 2pi back-bonding. The observations schematically depict the whole process, starting with the interaction of CO with metal and ending with CO dissociation by the lanthanum dimer.

摘要

研究了激光烧蚀的镧原子与固态氩中的CO分子的反应。在7K下进行样品沉积时产生的中性单羰基镧(LaCO),其C-O伸缩频率为1772.7cm-1;据我们所知,这是中性金属羰基分子(MCO,M =金属原子)中末端CO所观测到的最低频率,这意味着金属与CO之间的反馈键异常增强。1145.9cm-1处的红外(IR)吸收带归属于La2[η2(μ2-C,O)]分子中侧基配位CO的C-O伸缩模式。这种CO活化分子会发生紫外/可见光照诱导重排,生成CO解离分子c-La2(μ-C)(μ-O)。对这些分子进行了密度泛函理论(DFT)计算,计算结果有力地支持了红外光谱的实验归属。预测LaCO具有四重态基态,对应于线性几何结构。其形成涉及La 6s→4f跃迁,这通过降低σ排斥作用,特别是通过增强La 5d和4f→CO 2π反馈键,提高了La-CO键的强度。这些观测结果示意性地描绘了整个过程,从CO与金属的相互作用开始,到镧二聚体使CO解离结束。

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