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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Ab Initio Treatment of the Chemical Reaction Precursor Complex Br(~2P)-HCN.2.Bound-State Calculations and Infrared Spectra
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Ab Initio Treatment of the Chemical Reaction Precursor Complex Br(~2P)-HCN.2.Bound-State Calculations and Infrared Spectra

机译:化学反应前体配合物Br(〜2P)-HCN的从头算处理2.束缚态计算和红外光谱

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Rovibronic energy levels and properties of the Br(~2P)-HCN complex were obtained from three-dimensional calculations,with HCN kept linear and the CN bond frozen.All diabatic states that correlate to the ~2P_(3/2)and ~2P_(1/2)states of the Br atom were included and spin-orbit coupling was taken into account.The 3x3 matrix of diabatic potential surfaces was taken from the preceding paper(paper 1).In agreement with experiment,we found two linear isomers,Br-NCH and Br-HCN.The calculated binding energies are very similar:D_0 = 352.4 cm~(-1)and D_0 = 349.1 cm~(-1),respectively.We established,also in agreement with experiment,that the ground electronic state of Br-NCH has |OMEGA| =(1/2)and that Br-HCN has a ground state with |OMEGA| =(3/2),where the quantum number,OMEGA,is the projection of the total angular momentum,J,of the complex on the intermolecular axis R.This picture can be understood as being caused by the electrostatic interaction between the quadrupole of the Br(~2P)atom and the dipole of HCN,combined with the very strong spin-orbit coupling in Br.We predicted the frequencies of the van der Waals modes of both isomers and found a direct Renner- Teller splitting of the bend mode in Br-HCN and a smaller,indirect,splitting in Br-NCH.The red shift of the CH stretch frequency in the complex,relative to free HCN,was calculated to be 1.98 cm~(-1)for Br-NCH and 23.11 cm~(-1)for Br-HCN,in good agreement with the values measured in helium nanodroplets.Finally,with the use of the same potential surfaces,we modeled the Cl(~2P)-HCN complex and found that the experimentally observed linear Cl-NCH isomer is considerably more stable than the(not observed)Cl- HCN isomer.This was explained mainly as an effect of the substantially smaller spin-orbit coupling in Cl,relative to Br.
机译:通过三维计算获得Br(〜2P)-HCN配合物的转子能级和性质,其中HCN保持线性且CN键冻结。所有与〜2P_(3/2)和〜2P_相关的绝热状态包括Br原子的(1/2)状态,并考虑了自旋轨道耦合。从上一篇论文(论文1)中获得了非绝热势面的3x3矩阵。与实验一致,我们发现了两种线性异构体,计算得出的结合能非常相似:分别为D_0 = 352.4 cm〜(-1)和D_0 = 349.1 cm〜(-1)。 Br-NCH的接地电子态为| OMEGA | =(1/2),并且Br-HCN具有| OMEGA |的基态=(3/2),其中量子数OMEGA是该分子在分子间轴R上的总角动量J的投影。此图可以理解为是由四极子之间的静电相互作用引起的。 Br(〜2P)原子和HCN的偶极子,再加上Br中很强的自旋轨道耦合。我们预测了两种异构体的范德华模频率,并发现了弯曲模式的直接Renner-Teller分裂Br-NCH中的CH伸缩频率的红移相对于游离HCN而言,对于Br-NCH而言,CH伸缩频率的红移为1.98 cm〜(-1),对于游离HCN为23.11。 Br-HCN的cm〜(-1)与氦微滴中测得的值非常吻合。最后,使用相同的势能面,我们对Cl(〜2P)-HCN配合物进行了建模,发现实验观察到线性的Cl-NCH异构体比(未观察到的)Cl-HCN异构体稳定得多,这主要是由于亚砜的影响Cl中自旋轨道耦合相对于Br较小。

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