Khiri D, Hochlaf M, Chambaud G
Université Paris-Est , Laboratoire Modélisation et Simulation Multi-Echelle MSME, UMR 8208 CNRS, 5 Bd Descartes, 77454, Marne-la-Vallée, France.
J Phys Chem A. 2016 Aug 4;120(30):5985-92. doi: 10.1021/acs.jpca.6b04504. Epub 2016 Jul 26.
Highly correlated electronic wave functions within the Multi Reference Configuration Interaction (MRCI) approach are used to study the stability and the formation processes of the monohaloacetylenes HCCX and monohalovinylidenes C2HX (X = F, Cl, Br) in their electronic ground state. These tetra-atomics can be formed through the reaction of triatomic fragments C2F, C2Cl, and C2Br with a hydrogen atom or of C2H with halogen atoms via barrierless reactions, whereas the reactions between the diatomics [C2 + HX] need to overcome barriers of 1.70, 0.89, and 0.58 eV for X = F, Cl, and Br. It is found that the linear HCCX isomers, in singlet symmetry, are more stable than the singlet C2HX iso-forms by 1.995, 2.083, and 1.958 eV for X = F, Cl, and Br. The very small isomerization barriers from iso to linear forms are calculated 0.067, 0.044, and 0.100 eV for F, Cl, and Br systems. The dissociation energies of the HCCX systems (without ZPE corrections), resulting from the breaking of the CX bond, are calculated to be 5.647, 4.691, and 4.129 eV for X = F, Cl, Br, respectively. At the equilibrium geometry of the X(1)Σ(+) state of HCCX, the vertical excitation energies in singlet and triplet symmetries are all larger than the respective dissociation energies. Stable excited states are found only as (3)A', (3)A″, and (1)A″ monohalovinylidene structures.
在多参考组态相互作用(MRCI)方法中,利用高度相关的电子波函数来研究单卤代乙炔HCCX和单卤代亚乙烯基C2HX(X = F、Cl、Br)在其电子基态下的稳定性和形成过程。这些四原子分子可以通过三原子碎片C2F、C2Cl和C2Br与氢原子反应,或者C2H与卤原子通过无势垒反应形成,而双原子分子[C2 + HX]之间的反应对于X = F、Cl和Br需要克服1.70、0.89和0.58 eV的势垒。研究发现,对于X = F、Cl和Br,单重态对称的线性HCCX异构体比单重态C2HX异构体分别稳定1.995、2.083和1.958 eV。计算得出F、Cl和Br体系从异构体形式到线性形式的异构化势垒非常小,分别为0.067、0.044和0.100 eV。由CX键断裂产生的HCCX体系的解离能(无零点能校正),对于X = F、Cl、Br分别计算为5.647、4.691和4.129 eV。在HCCX的X(1)Σ(+)态的平衡几何构型下,单重态和三重态对称的垂直激发能均大于各自的解离能。仅发现(3)A'、(3)A″和(1)A″单卤代亚乙烯基结构为稳定的激发态。