Willitsch S, Hollenstein U, Merkt F
Physical Chemistry, ETH Zurich, CH-8093 Zurich, Switzerland.
J Chem Phys. 2004 Jan 22;120(4):1761-74. doi: 10.1063/1.1635815.
Rotationally resolved pulsed-field-ionization zero-kinetic-energy photoelectron spectra of the X-->X+ transition in ethylene and ethylene-d4 have been recorded at a resolution of 0.09 cm(-1). The spectra provide new information on the large amplitude torsional motion in the cationic ground state. An effective one-dimensional torsional potential was determined from the experimental data. Both C2H4+ and C2D4+ exhibit a twisted geometry, and the lowest two levels of the torsional potential form a tunneling pair with a tunneling splitting of 83.7(5) cm(-1) in C2H4+ and of 37.1(5) cm(-1) in C2D4+. A model was developed to quantitatively analyze the rotational structure of the photoelectron spectra by generalizing the model of Buckingham, Orr, and Sichel [Philos. Trans. R. Soc. London, Ser. A 268, 147 (1970)] to treat asymmetric top molecules. The quantitative analysis of the rotational intensity distributions of allowed as well as forbidden vibrational bands enabled the identification of strong vibronic mixing between the X+ and A+ states mediated by the torsional mode nu(4) and a weaker mixing between the X+ and B+ states mediated by the symmetric CH2 out-of-plane bending mode nu7. The vibrational intensities could be accounted for quantitatively using a Herzberg-Teller-type model for vibronic intensity borrowing. The adiabatic ionization energies of C2H4 and C2D4 were determined to be 84 790.42(23) cm(-1) and 84 913.3(14) cm(-1), respectively.
在分辨率为0.09 cm⁻¹的条件下,记录了乙烯和乙烯 - d₄中X→X⁺跃迁的转动分辨脉冲场电离零动能光电子能谱。这些能谱提供了关于阳离子基态中大振幅扭转运动的新信息。根据实验数据确定了一个有效的一维扭转势。C₂H₄⁺和C₂D₄⁺均呈现扭曲几何结构,扭转势的最低两个能级形成一个隧穿对,C₂H₄⁺中的隧穿分裂为83.7(5) cm⁻¹,C₂D₄⁺中的隧穿分裂为37.1(5) cm⁻¹。通过推广Buckingham、Orr和Sichel [《伦敦皇家学会哲学学报》,A辑268, 147 (1970)]的模型以处理不对称顶部分子,开发了一个模型来定量分析光电子能谱的转动结构。对允许和禁戒振动带的转动强度分布进行定量分析,使得能够识别由扭转模式ν₄介导的X⁺和A⁺态之间的强振动 - 电子混合以及由对称CH₂面外弯曲模式ν₇介导的X⁺和B⁺态之间较弱的混合。振动强度可以使用用于振动 - 电子强度借用的Herzberg - Teller型模型进行定量解释。确定C₂H₄和C₂D₄的绝热电离能分别为84 790.42(23) cm⁻¹和84 913.3(14) cm⁻¹。