Department of Chemistry, University of Kentucky, Lexington, Kentucky 40506-0055, USA.
J Chem Phys. 2012 Apr 7;136(13):134310. doi: 10.1063/1.3700085.
Monobenzene complexes of yttrium (Y), lanthanum (La), and lutetium (Lu), M(C(6)H(6)) (M = Y, La, and Lu), were prepared in a laser-vaporization supersonic molecular beam source and studied by pulsed-field ionization zero electron kinetic energy (ZEKE) spectroscopy and ab initio calculations. The calculations included the second-order perturbation, the coupled cluster with single, double, and perturbative triple excitation, and the complete active space self-consistent field methods. Adiabatic ionization energies and metal-benzene stretching frequencies of these complexes were measured for the first time from the ZEKE spectra. Electronic states of the neutral and ion complexes and benzene ring deformation were determined by combining the spectroscopic measurements with the theoretical calculations. The ionization energies of M(C(6)H(6)) are 5.0908 (6), 4.5651 (6), and 5.5106 (6) eV, and the metal-ligand stretching frequencies of M(C(6)H(6)) are 328, 295, and 270 cm(-1) for M = Y, La, and Lu, respectively. The ground states of M(C(6)H(6)) and M(C(6)H(6)) are (2)A(1) and (1)A(1), respectively, and their molecular structures are in C(2v) point group with a bent benzene ring. The deformation of the benzene ring upon metal coordination is caused by the pseudo Jahn-Teller interaction of (1(2)E(2)+1(2)A(1)+2(2)E(2)) e(2) at C(6v) symmetry. In addition, the study shows that spectroscopic behaviors of Y(C(6)H(6)) and La(C(6)H(6)) are similar to each other, but different from that of Lu(C(6)H(6)).
钇(Y)、镧(La)和镥(Lu)的单苯配合物,M(C(6)H(6))(M = Y、La 和 Lu),在激光蒸发超声分子束源中制备,并通过脉冲场电离零电子动能(ZEKE)光谱和从头算计算进行研究。计算包括二阶微扰、单、双和微扰三重激发的耦合簇以及完全活性空间自洽场方法。这些配合物的绝热电离能和金属-苯伸缩频率首次从 ZEKE 光谱中测量得到。通过结合光谱测量和理论计算,确定了中性和离子配合物的电子态和苯环变形。M(C(6)H(6))的电离能分别为 5.0908(6)、4.5651(6)和 5.5106(6)eV,M(C(6)H(6))的金属-配体伸缩频率分别为 328、295 和 270 cm(-1),对于 M = Y、La 和 Lu。M(C(6)H(6))和M(C(6)H(6))的基态分别为(2)A(1)和(1)A(1),它们的分子结构均为 C(2v)点群,苯环呈弯曲状。苯环在金属配位时的变形是由 C(6v)对称下的(1(2)E(2)+1(2)A(1)+2(2)E(2))e(2)的赝 Jahn-Teller 相互作用引起的。此外,研究表明,Y(C(6)H(6))和 La(C(6)H(6))的光谱行为彼此相似,但与 Lu(C(6)H(6))不同。