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高分辨率电子能谱和第 6 族金属(Cr、Mo 和 W)双(均三甲苯)夹心配合物的旋转异构体。

High-resolution electron spectroscopy and rotational conformers of group 6 metal (Cr, Mo, and W) bis(mesitylene) sandwich complexes.

机构信息

Department of Chemistry, University of Kentucky , Lexington, Kentucky 40506-0055, United States.

出版信息

J Phys Chem A. 2013 Dec 19;117(50):13336-44. doi: 10.1021/jp4064998. Epub 2013 Aug 16.

DOI:10.1021/jp4064998
PMID:23919245
Abstract

Group 6 metal-bis(mesitylene) sandwich complexes are produced by interactions between the laser-vaporized metal atoms and mesitylene vapor in a pulsed molecular beam source, identified by photoionization time-of-flight mass spectrometry, and studied by pulsed-field ionization zero-electron kinetic energy spectroscopy and density functional theory calculations. Although transition metal-bis(arene) sandwich complexes may adopt eclipsed and staggered conformations, the group 6 metal-bis(mesitylene) complexes are determined to be in the eclipsed form. In this form, rotational conformers with methyl group dihedral angles of 0 and 60° are identified for the Cr complex, whereas the 0° rotamer is observed for the Mo and W species. The 0° rotamer is in a C(2v) symmetry with the neutral ground state of (1)A1 and the singly positive charged ion state of (2)A1. The 60° rotamer is in a C(i) symmetry with the neutral ground state of (1)A(g) and the ion state of (2)A(g). Partial conversion of the 60 to 0° rotamer is observed from He to He/Ar supersonic expansion for Cr-bis(mesitylene). The unsuccessful observation of the 60° rotamer for the Mo and W complexes is the result of its complete conversion to the 0° rotamer in both He and He/Ar expansions. The adiabatic ionization energies of the 0° rotamers of the three complexes are in the order of Cr-bis(mesitylene) < W-bis(mesitylene) < Mo-bis(mesitylene), which is different from that of the metal atoms. These metal-bis(mesitylene) complexes have lower ionization energies than the corresponding metal-bis(benzene) and -bis(toluene) species.

摘要

六族金属-双(均三甲苯)夹心配合物是通过激光蒸发金属原子与脉冲分子束源中的均三甲苯蒸气相互作用产生的,通过光电离飞行时间质谱鉴定,并通过脉冲场电离零电子动能光谱和密度泛函理论计算进行研究。尽管过渡金属-双(芳烃)夹心配合物可能采取重叠和交错构象,但确定六族金属-双(均三甲苯)配合物为重叠构象。在这种形式中,对于 Cr 配合物,鉴定出甲基二面角为 0 和 60°的旋转构象,而对于 Mo 和 W 物种,则观察到 0°旋转异构体。0°旋转异构体在中性基态为(1)A1 和单正电荷离子态为(2)A1 的 C(2v)对称中。60°旋转异构体在中性基态为(1)A(g)和离子态为(2)A(g)的 C(i)对称中。从 He 到 He/Ar 超音速膨胀,Cr-双(均三甲苯)观察到 60°到 0°旋转异构体的部分转化。Mo 和 W 配合物未观察到 60°旋转异构体是由于在 He 和 He/Ar 膨胀中完全转化为 0°旋转异构体所致。三个配合物的 0°旋转异构体的绝热电离能顺序为 Cr-双(均三甲苯)<W-双(均三甲苯)<Mo-双(均三甲苯),这与金属原子不同。这些金属-双(均三甲苯)配合物的电离能低于相应的金属-双(苯)和-双(甲苯)物种。

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