Chang Hai-Bo, Chen Bo-Zhen, Huang Ming-Bao
College of Chemistry and Chemical Engineering, Graduate University of Chinese Academy of Sciences, P.O. Box 4588, Beijing 100049, People's Republic of China.
J Phys Chem A. 2008 Feb 28;112(8):1688-93. doi: 10.1021/jp710633s. Epub 2008 Feb 2.
We studied the 1(2)A' '(X2A' '), 1(2)A' (A2A'), 2(2)A' ' (B2A' '), and 2(2)A' (C2A') states of the C2H3Cl+ ion using the complete active space self-consistent field (CASSCF) and multiconfiguration second-order perturbation theory (CASPT2) methods. For the four ionic states, we calculated the equilibrium geometries, adiabatic (T0) and vertical (Tv) excitation energies, and relative energies (Tv') at the geometry of the molecule at the CASPT2 level and the Cl-loss dissociation potential energy curves (PECs) at the CASPT2//CASSCF level. The computed oscillator strength f value for the X2A' ' <-- A2A' transition is very small, which is in line with the experimental fact that the A state has a long lifetime. The CASPT2 geometry and T0 value for the A2A' state are in good agreement with experiment. The CASPT2 Tv' values for the A2A', B2A' ', and C2A' states are in good agreement with experiment. The Cl-loss PEC calculations predict that the X2A' ', A2A', and C2A' states correlate to C2H3+ (XA1) and the BA' ' state to C2H3+ (1A' ') (the B2A' ' and C2A' PECs cross at R(C-Cl) approximately 2.24 A). Our calculations indicate that at 357 nm the X2A' ' state can undergo a transition to B2A' ' followed by a predissociation of B2A' ' by the repulsive C2A' state (via the B/C crossing), leading to C2H3+ (X1A1), and therefore confirm the experimentally proposed pathway for the photodissociation of X2A' ' at 357 nm. Our CASPT2 D0 calculations support the experimental fact that the X state does not undergo dissociation in the visible spectral region and imply that a direct dissociation of the A state to C2H3+ (X1A1) is energetically feasible.
我们使用完全活性空间自洽场(CASSCF)和多组态二阶微扰理论(CASPT2)方法研究了C2H3Cl+离子的1(2)A''(X2A''), 1(2)A'(A2A'), 2(2)A''(B2A''), 和2(2)A'(C2A')态。对于这四个离子态,我们在CASPT2水平计算了平衡几何结构、绝热(T0)和垂直(Tv)激发能以及在分子几何结构处的相对能量(Tv'),并在CASPT2//CASSCF水平计算了Cl损失解离势能曲线(PEC)。计算得到的X2A'' ← A2A'跃迁的振子强度f值非常小,这与A态具有长寿命的实验事实相符。A2A'态的CASPT2几何结构和T0值与实验结果吻合良好。A2A'、B2A''和C2A'态的CASPT2 Tv'值与实验结果吻合良好。Cl损失PEC计算预测,X2A''、A2A'和C2A'态与C2H3+(XA1)相关,而BA''态与C2H3+(1A'')相关(B2A''和C2A'的PEC在R(C-Cl)约为2.24 Å处交叉)。我们的计算表明,在357 nm处,X2A''态可以跃迁到B2A'',随后B2A''被排斥的C