Bonfim Víctor S A, Baptista Leonardo, Oliveira Daniel A B, Honda Diego E, Santos Antônio C F
Instituto de Física, Universidade Federal Do Rio de Janeiro, Rio de Janeiro, RJ, Brazil.
Departamento de Química E Ambiental, Universidade Do Estado Do Rio de Janeiro, Resende, RJ, Brazil.
J Mol Model. 2022 Sep 12;28(10):309. doi: 10.1007/s00894-022-05282-w.
This work discusses the possible HF formation routes via recombination reactions from CFCHF (R-134a) and its cation. The molecular properties of the main reagents were first evaluated at the M06-2X/cc-pVTZ level. Then, changes in energy (ΔE) for all reactions comprising a possible HF formation from the studied systems were evaluated at the CCSD(T)/CBS//M06-2X/cc-pVTZ level. With the aid of Intrinsic Reaction Coordinate (IRC) calculations for each path, it is found that the HF formation reaction takes place majorly through the "1,2" elimination, resulting in an olefin as the secondary product. In turn, the IRC associated with "2,2" reactions allowed to find a post-barrier complex between the carbene :CHCF and HF in its exit channel, with dissociation energy of ∼4 kcal mol. Similarly, the cationic system exhibits favoritism towards the "1,2" elimination, and an ion-dipole post-barrier complex is found. The ΔE of such a complex production is negative in both directions, indicating this complex (25.5 kcal/mol more stable than CFCHF) should be a minimum on the R-134a cation surface. However, unlike the neutral "2,2" path, there is no F atom migration transition state for the 2,2-HF elimination from CFCHF. Hence, the F migration is expected to occur simultaneously with the rest of the structural changes towards the ion-dipole complex. The rate coefficients computed at the current level of theory, including corrections for anharmonicity and hindered rotations, showed a reasonable agreement with the available experimental data, inspiring confidence in our predictions for the cationic system.
这项工作讨论了通过CFCHF(R - 134a)及其阳离子的重组反应形成HF的可能途径。首先在M06 - 2X/cc - pVTZ水平上评估了主要反应物的分子性质。然后,在CCSD(T)/CBS//M06 - 2X/cc - pVTZ水平上评估了所研究体系中所有可能形成HF的反应的能量变化(ΔE)。借助对每条路径的内禀反应坐标(IRC)计算,发现HF形成反应主要通过“1,2”消除发生,生成烯烃作为副产物。反过来,与“2,2”反应相关的IRC使得在其出口通道中发现了卡宾:CHCF与HF之间的势垒后络合物,其离解能约为4 kcal/mol。同样,阳离子体系对“1,2”消除表现出偏好,并发现了一个离子 - 偶极势垒后络合物。这种络合物生成的ΔE在两个方向上都是负的,表明该络合物(比CFCHF稳定25.5 kcal/mol)应该是R - 134a阳离子表面上的一个最低点。然而,与中性的“2,2”路径不同,CFCHF的2,2 - HF消除没有F原子迁移过渡态。因此,预计F迁移将与朝向离子 - 偶极络合物的其他结构变化同时发生。在当前理论水平下计算的速率系数,包括对非谐性和受阻旋转的校正,与现有的实验数据显示出合理的一致性,这增强了我们对阳离子体系预测的信心。