Hübner O, Himmel H-J, Manceron L, Klopper W
Institut für Nanotechnologie, Forschungszentrum Karlsruhe, Postfach 3640, 76021 Karlsruhe, Germany.
J Chem Phys. 2004 Oct 15;121(15):7195-206. doi: 10.1063/1.1787492.
Absorption spectra were measured for Ti2 in Ne and Ar matrices. The spectra give evidence for several electronic transitions in the region between 4000 and 10 000 cm(-1) and provide important information about some excited electronic states of Ti2 in proximity to the ground state. The vibrational fine structure measured for these transitions allowed to calculate the force constants and the anharmonicity of the potential energy curves of the excited states, and to estimate changes in the internuclear Ti-Ti distances relative to the electronic ground state. The quantum chemical studies confirm the previously suggested (3)Delta(g) state as the ground state of Ti2. The equilibrium bond distance is calculated to be 195.4 pm. The calculated harmonic frequency of 432 cm(-1) is in good agreement with the experimental value of 407.0 cm(-1). With the aid of the calculations it was possible to assign the experimentally observed transitions in the region between 4000 and 10 000 cm(-1) to the 1 (3)Pi(u)<--(3)Delta(g), 1 (3)Phi(u)<--(3)Delta(g), 2 (3)Pi(u)<--(3)Delta(g), 2 (3)Phi(u)<--(3)Delta(g), and (3)Delta(u)<--(3)Delta(g) excitations (in the order of increasing energy). The calculated relative energies and harmonic frequencies are in pleasing agreement with the experimentally obtained values, with deviations of less than 5% and 2%, respectively. The bond distances estimated on the basis of the experimental spectra tally satisfactorily with the predictions of our calculations.
测量了Ti₂在Ne和Ar基质中的吸收光谱。这些光谱证明了在4000至10000 cm⁻¹区域内有几种电子跃迁,并提供了有关Ti₂基态附近一些激发电子态的重要信息。对这些跃迁测量的振动精细结构使得能够计算激发态势能曲线的力常数和非谐性,并估计相对于电子基态的核间Ti-Ti距离的变化。量子化学研究证实了先前提出的(³Δg)态是Ti₂的基态。计算得出的平衡键长为195.4 pm。计算出的432 cm⁻¹的谐频与407.0 cm⁻¹的实验值吻合良好。借助计算,可以将实验观察到的4000至10000 cm⁻¹区域内的跃迁归属于1(³Πu)←(³Δg)、1(³Φu)←(³Δg)、2(³Πu)←(³Δg)、2(³Φu)←(³Δg)和(³Δu)←(³Δg)激发(按能量增加顺序)。计算出的相对能量和谐频与实验得到的值吻合良好,偏差分别小于5%和2%。根据实验光谱估计的键长与我们计算的预测结果令人满意地相符。