首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Curious matrix effects: A computational, electron diffraction, and vibrational spectroscopic study of dysprosium triiodide
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Curious matrix effects: A computational, electron diffraction, and vibrational spectroscopic study of dysprosium triiodide

机译:好奇的基体效应:三碘化的计算,电子衍射和振动光谱研究

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摘要

The molecular and electronic structure of dysprosium triiodide, DyI _3, and its dimer, Dy_2I_6, was determined by high level computations, gas-phase electron diffraction, and gas-phase infrared and matrix-isolation infrared and Raman spectroscopy. The free monomeric molecule is planar from all methods with an equilibrium bond length of 2.808(9) ?; the thermal average bond length from electron diffraction is 2.828(6) ?. The molecule forms complexes in the matrix-isolation experiments causing pyramidalisation of planar monomeric molecules. The likelihood of having both pyramidal and planar DyI_3 molecules in the matrix is discussed in order to explain certain features of the spectra. Our computations suggest that the dimer geometry depends on the occupation of the partially filled 4f orbitals. As this is the third molecule in the dysprosium trihalide series studied, trends in their electronic and molecular structures are presented and discussed.
机译:三碘化Dy3 _3及其二聚体Dy_2I_6的分子和电子结构是通过高水平计算,气相电子衍射,气相红外和基质分离红外及拉曼光谱确定的。游离单体分子在所有方法中都是平面的,平衡键长为2.808(9)Ω。电子衍射的热平均键长为2.828(6)Ω。该分子在基质分离实验中形成络合物,导致平面单体分子发生锥体化。为了解释光谱的某些特征,讨论了在基质中同时具有锥体和平面的DyI_3分子的可能性。我们的计算表明,二聚体的几何形状取决于部分填充的4f轨道的占据。由于这是三卤化series系列中的第三个分子,因此将介绍和讨论其电子和分子结构的趋势。

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