Liu Yang, Bersuker Isaac B, Zou Wenli, Boggs James E
Institute for Theoretical Chemistry, Department of Chemistry and Biochemistry, The University of Texas at Austin, Austin, Texas 78712-0165.
J Chem Theory Comput. 2009 Oct 13;5(10):2679-86. doi: 10.1021/ct9002515. Epub 2009 Sep 24.
A complicated problem of seven electronic states in four terms, (1)A1', (1)E'', 1(1)E', and 2(1)E', interacting with six vibrational modes, a1', a2'', e', and e', was solved to take into account the combined two-mode Jahn-Teller (JT) plus two-mode pseudo JT effects and rationalize the electronic structure of the CO3 molecule. The JT and first-order pseudo JT effects in the E'' state are separated from the rest of the problem by symmetry; they do not influence the ground state properties. In the remaining five-state five-mode problem including the ground state, (A1' + 1E' + 2E') ⊗ (a1' + e' + e'), the JT two-mode problem is reduced to the one-mode one by means of coordinate transformations. Several high-level ab initio calculations including all of the five states confirm the previously found coexistence of a central minimum of D3h symmetry and three equivalent minima with a distorted geometry of C2v symmetry in the ground state; the barrier between them is rather small, 0.2-0.3 eV, but large enough to distinguish them spectroscopically. Harmonic vibrational frequencies of the two configurations near the minima of the adiabatic potential energy surface are also evaluated. The calculations show how the distorted configurations are produced by the JT effect in one of the excited E states, similar to a previous finding in O3. Numerical data of ab initio calculations yield also the effective vibronic and primary force constants for all of the terms. An electronic structure problem of this complexity including a reduction of the two-mode problem to one mode with full interpretation of the origin of coexisting different geometries as due to the JTE in the excited state is presented here for the first time.
解决了一个复杂问题,该问题涉及四个能级中的七个电子态,即(1)A1'、(1)E''、1(1)E'和2(1)E',它们与六个振动模式a1'、a2''、e'和e'相互作用,同时考虑了双模式 Jahn-Teller(JT)加双模式赝 JT 效应,并对 CO3 分子的电子结构进行了合理化分析。E''态中的 JT 效应和一级赝 JT 效应通过对称性与问题的其余部分分离;它们不影响基态性质。在包括基态在内的剩余五态五模式问题(A1' + 1E' + 2E') ⊗ (a1' + e' + e')中,通过坐标变换将 JT 双模式问题简化为单模式问题。包括所有五个态的几个高水平从头算计算证实了之前发现的基态中存在 D3h 对称性的中心最小值和三个具有 C2v 对称扭曲几何结构的等效最小值;它们之间的势垒相当小,为 0.2 - 0.3 eV,但足以在光谱上区分它们。还评估了绝热势能面最小值附近两种构型的谐波振动频率。计算表明,类似于之前在 O3 中的发现,扭曲构型是由一个激发 E 态中的 JT 效应产生的。从头算计算的数值数据还给出了所有能级的有效振动电子和主要力常数。本文首次提出了这样一个复杂的电子结构问题,包括将双模式问题简化为单模式问题,并充分解释了由于激发态中的 Jahn-Teller 效应导致共存不同几何结构的起源。