Department of Chemistry, University of Kentucky, Lexington, Kentucky 40506-0055, USA.
J Phys Chem A. 2010 Oct 28;114(42):11277-84. doi: 10.1021/jp1041102.
Group 6 metal (Cr, Mo, and W)-bis(toluene) sandwich complexes are synthesized in a laser-vaporization molecular beam source. Conformational isomers and isomerization of these complexes are studied by variable-temperature pulsed-field-ionization zero-electron-kinetic-energy spectroscopy and density functional theory. For Cr-bis(toluene), four rotational conformers are identified with methyl-group dihedral angles of 0, 60, 120, and 180°. The ground electronic states of these conformers are (1)A(1) (C(2v), 0°), (1)A (C(2), 60 and 120°), and (1)A(g) (C(2h), 180°) in the neutral form and (2)A(1) (C(2v), 0°), (2)A (C(2), 60 and 120°), and (2)A(g) (C(2h), 180°) in the singly charged cationic form. For Mo- and W-bis(toluene), the four rotamers are resolved into three (0, 60/120, and 180°) and two (0 and 60/120/180°) groups, respectively. For all three metal sandwiches, the most stable conformer is in the complete eclipsed configuration (0°) and has the highest ionization energy. The conversion from 60/120/180° to 0° rotamer is observed from helium to argon supersonic expansions and is more efficient for the heavier Mo and W species.
六族金属(Cr、Mo 和 W)-双(甲苯)夹心配合物在激光蒸发分子束源中合成。通过变温脉冲场离子化零电子动能光谱和密度泛函理论研究了这些配合物的构象异构体和异构化。对于 Cr-双(甲苯),确定了四个旋转构象,其甲基二面角分别为 0°、60°、120°和 180°。这些构象的基态电子态在中性形式下为(1)A(1)(C(2v),0°)、(1)A(C(2),60 和 120°)和(1)A(g)(C(2h),180°),在单电荷阳离子形式下为(2)A(1)(C(2v),0°)、(2)A(C(2),60 和 120°)和(2)A(g)(C(2h),180°)。对于 Mo-和 W-双(甲苯),四个旋光异构体分别解析为三组(0°、60/120°和 180°)和两组(0°和 60/120/180°)。对于所有三种金属夹心配合物,最稳定的构象处于完全重叠构型(0°),具有最高的电离能。从氦到氩超声速膨胀观察到从 60/120/180°旋光异构体到 0°旋光异构体的转化,对于较重的 Mo 和 W 物种更为有效。