首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Quantum mechanical reaction probability of triplet ketene at the multireference second-order perturbation level of theory
【24h】

Quantum mechanical reaction probability of triplet ketene at the multireference second-order perturbation level of theory

机译:三重态乙烯酮在多参考二级扰动水平上的量子力学反应概率

获取原文
获取原文并翻译 | 示例
           

摘要

Triplet ketene exhibits a steplike structure in the experimentally observed dissociation rates, but its mechanism is still unknown despite many theoretical efforts in the past decades. In this paper we revisit this problem by quantum mechanically calculating the reaction probability with multireference-based electronic structure theory. Specifically, we first construct an analytical potential energy surface of triplet state by fitting it to about 6000 ab initio energies computed at the multireference second-order M?ller-Plesset perturbation (MRMP2) level. We then evaluate the cumulative reaction probability by using the transition state wave packet method together with an adiabatically constrained Hamiltonian. The result shows that the imaginary barrier frequency on the triplet surface is 328i cm~(-1), which is close to the CCSD(T) result (321i cm~(-1)) but is likely too large for reproducing the experimentally observed steps. Indeed, our calculated reaction probability exhibits no signature of steps, reflecting too strong tunneling effect along the reaction coordinate. Nevertheless, it is emphasized that the flatness of the potential profile in the transition-state region (which governs the degree of tunneling) depends strongly on the level of electronic structure calculation, thus leaving some possibility that the use of more accurate theories might lead to the observed steps. We also demonstrate that the triplet potential surface differs significantly between the CASSCF and MRMP2 results, particularly in the transition-state region. This fact seems to require more attention when studying the "nonadiabatic" scenario for the steps, in which the crossing seam between S_0 and T_1 surfaces is assumed to play a central role.
机译:在实验观察到的解离速率中,三重态乙烯酮显示出阶梯状结构,但是尽管在过去的几十年中进行了许多理论上的努力,但其机理仍然未知。在本文中,我们通过基于多参考的电子结构理论通过量子力学计算反应概率来重新审视此问题。具体来说,我们首先将三重态的分析势能面拟合为在多参考二阶Mller-Plesset扰动(MRMP2)级别计算的约6000 ab初始能量。然后,我们使用过渡态波包方法以及绝热约束哈密顿量,评估累积反应概率。结果表明,三重态表面上的虚拟势垒频率为328i cm〜(-1),与CCSD(T)结果(321i cm〜(-1))接近,但可能太大,无法重现实验观察到的结果。脚步。实际上,我们计算出的反应概率没有任何阶跃特征,反映了沿反应坐标的过强隧穿效应。然而,需要强调的是,过渡态区域中的电位分布图的平坦度(决定着隧穿程度)在很大程度上取决于电子结构的计算水平,因此存在使用更精确的理论可能导致观察到的步骤。我们还证明,在CASSCF和MRMP2结果之间,三重态势能表面存在显着差异,尤其是在过渡态区域。在研究“非绝热”场景的步骤时,似乎需要更多注意这一事实,其中假定S_0和T_1表面之间的交叉接缝起着中心作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号