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铁、钌和锇金属氢化物及二氢配合物的红外光谱和理论计算。

Infrared spectra and theoretical calculations for Fe, Ru, and Os metal hydrides and dihydrogen complexes.

作者信息

Wang Xuefeng, Andrews Lester

机构信息

Department of Chemistry, P.O. Box 400319, University of Virginia, Charlottesville, Virginia 22904-4319, USA.

出版信息

J Phys Chem A. 2009 Jan 22;113(3):551-63. doi: 10.1021/jp806845h.

Abstract

Laser-ablated iron, ruthenium, and osmium atoms react with hydrogen in excess argon, neon and pure hydrogen to produce the FeH(2) molecule, and the FeH(2)(H(2))(3), RuH(H(2))(4), RuH(2)(H(2))(4), and (H(2))MH complexes (M = Fe, Ru, Os), as identified through infrared spectra with D(2) and HD substitution. DFT frequency calculations support the assignment of absorptions observed experimentally. The FeH(2) molecule has a quintet ground state with a quasi-linear structure, and is repulsive to the addition of one more H(2) ligand: however, with three more H(2) ligands, stable triplet and singlet state FeH(2)(H(2))(3) supercomplexes can be formed. The quintet FeH(2) molecule and FeH(2)(H(2))(3) supercomplex undergo reversible near-ultraviolet photochemical rearrangement in solid neon and hydrogen. The RuH(2) molecule has a bent triplet ground state and forms the stable singlet RuH(2)(H(2))(4) supercomplex, but only the latter is observed in these experiments. In like fashion RuH has a quartet ground state and the doublet RuH(H(2))(4) complex is trapped in solid hydrogen. All three (H(2))MH complexes with lower energy than MH(3) are trapped, and no absorptions are observed for MH(3) molecules.

摘要

激光烧蚀的铁、钌和锇原子在过量的氩气、氖气和纯氢气中与氢气反应,生成FeH₂分子以及FeH₂(H₂)₃、RuH(H₂)₄、RuH₂(H₂)₄和(H₂)MH配合物(M = Fe、Ru、Os),这些通过用D₂和HD取代后的红外光谱得以鉴定。密度泛函理论频率计算支持了对实验观测到的吸收峰的归属。FeH₂分子具有五重态基态,结构近似线性,再添加一个H₂配体时具有排斥性:然而,再添加三个H₂配体时,可以形成稳定的三重态和单重态FeH₂(H₂)₃超配合物。五重态FeH₂分子和FeH₂(H₂)₃超配合物在固态氖气和氢气中会发生可逆的近紫外光化学重排。RuH₂分子具有弯曲的三重态基态,形成稳定的单重态RuH₂(H₂)₄超配合物,但在这些实验中仅观测到了后者。同样地,RuH具有四重态基态,双重态RuH(H₂)₄配合物被困在固态氢气中。所有三种能量低于MH₃的(H₂)MH配合物都被捕获,未观测到MH₃分子的吸收峰。

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