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基准锰离子-氢气络合物的光谱研究

Spectroscopic study of the benchmark Mn+-H2 complex.

作者信息

Dryza Viktoras, Poad Berwyck L J, Bieske Evan J

机构信息

School of Chemistry, The University of Melbourne, Victoria, Australia 3010.

出版信息

J Phys Chem A. 2009 May 28;113(21):6044-8. doi: 10.1021/jp9031767.

Abstract

We have recorded the rotationally resolved infrared spectrum of the weakly bound Mn+-H2 complex in the H-H stretch region (4022-4078 cm(-1)) by monitoring Mn+ photodissociation products. The band center of Mn+-H2, the H-H stretch transition, is shifted by -111.8 cm(-1) from the transition of the free H2 molecule. The spectroscopic data suggest that the Mn+-H2 complex consists of a slightly perturbed H2 molecule attached to the Mn+ ion in a T-shaped configuration with a vibrationally averaged intermolecular separation of 2.73 A. Together with the measured Mn+...H2 binding energy of 7.9 kJ/mol (Weis, P.; et al. J. Phys. Chem. A 1997, 101, 2809.), the spectroscopic parameters establish Mn+-H2 as the most thoroughly characterized transition-metal cation-dihydrogen complex and a benchmark for calibrating quantum chemical calculations on noncovalent systems involving open d-shell configurations. Such systems are of possible importance for hydrogen storage applications.

摘要

我们通过监测Mn⁺光解离产物,记录了弱束缚的Mn⁺-H₂络合物在H-H伸缩振动区域(4022 - 4078 cm⁻¹)的转动分辨红外光谱。Mn⁺-H₂的谱带中心,即H-H伸缩振动跃迁,相对于自由H₂分子的跃迁发生了-111.8 cm⁻¹的位移。光谱数据表明,Mn⁺-H₂络合物由一个轻微扰动的H₂分子以T形构型附着在Mn⁺离子上组成,其振动平均分子间距离为2.73 Å。结合测得的Mn⁺...H₂结合能7.9 kJ/mol(魏斯,P.等人,《物理化学杂志A》1997年,第101卷,第2809页),这些光谱参数将Mn⁺-H₂确立为表征最充分的过渡金属阳离子-二氢络合物,以及用于校准涉及开放d壳层构型的非共价体系量子化学计算的基准。此类体系对于储氢应用可能具有重要意义。

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