Rodrigues Gessenildo Pereira, Lucena Juracy Régis, Ventura Elizete, do Monte Silmar Andrade
Departamento de Química, Universidade Federal da Paraíba, 58059-900, João Pessoa, PB, Brazil.
J Mol Model. 2014 Sep;20(9):2393. doi: 10.1007/s00894-014-2393-3. Epub 2014 Aug 19.
The vertical ionization energies of the chlorine lone pairs in HCFC-133a have been calculated at the SCF (via Koopmans' theorem and including orbital relaxation) and correlated (ROMP2, OVGF, and ROCCSD(T)) levels. Dunning aug-cc-pVXZ (X = D, T, and Q) basis sets were employed, and the ROMP2 and ROCCSD(T) results were extrapolated to the complete basis set (CBS) limit. Our highest-level results (obtained at the ROCCSD(T)/CBS level) were 11.99 and 12.08 eV for the Cl lone pairs of A″ and A' symmetry, respectively. The values obtained at the computationally much less demanding ROMP2/CBS level were just 0.10 and 0.13 eV higher than the highest-level ones. Using the Cl lone-pair band of the photoelectron spectrum of the HCF(2)Cl and CF(3)Cl molecules as a guide, it is considered very unlikely that these two lone pairs can be discriminated in the photoelectron spectrum of the title molecule. The use of the calculated IPs to estimate the energies of the Rydberg states of HCFC-133a is also discussed.
已在自洽场(通过库普曼斯定理并包括轨道弛豫)以及相关(ROMP2、OVGF和ROCCSD(T))水平上计算了HCFC - 133a中氯孤对电子的垂直电离能。采用了邓宁aug - cc - pVXZ(X = D、T和Q)基组,并将ROMP2和ROCCSD(T)结果外推至完备基组(CBS)极限。我们的最高水平结果(在ROCCSD(T)/CBS水平获得)对于A″和A'对称性的Cl孤对电子分别为11.99和12.08 eV。在计算要求低得多的ROMP2/CBS水平获得的值仅比最高水平的值高0.10和0.13 eV。以HCF(2)Cl和CF(3)Cl分子光电子能谱中的Cl孤对电子能带为指导,认为在标题分子的光电子能谱中极不可能区分这两个孤对电子。还讨论了使用计算得到的电离势来估计HCFC - 133a里德堡态的能量。