Alexandrova Anastassia N, Koyle Eldon, Boldyrev Alexander I
Department of Chemistry and Biochemistry, Utah State University, 0300 Old Main Hill, Logan, UT 84322-0300, USA.
J Mol Model. 2006 Jul;12(5):569-76. doi: 10.1007/s00894-005-0035-5. Epub 2005 Oct 29.
We have studied the influence of hydrogenation on the relative stability of the low-lying isomers of the anionic B7- cluster, computationally. It is known that the pure-boron B7- cluster has a doubly (sigma- and pi-) aromatic C6v(3A1) quasi-planar wheel-type triplet global minimum (structure 1), a low-lying sigma-aromatic and pi-antiaromatic quasi-planar singlet C2v (1A1) isomer 2 (0.7 kcal mol(-1) above the global minimum), and a planar doubly (sigma- and pi-) antiaromatic C2v (1A1) isomer 3 (7.8 kcal mol(-1) above the global minimum). However, upon hydrogenation, an inversion in the stability of the species occurs. The planar B7H 2- (C2v, 1A1) isomer 4, originated from the addition of two hydrogen atoms to the doubly antiaromatic B7- isomer 3, becomes the global minimum structure. The second most stable B7H2- isomer 5, originated from the quasi-planar triplet wheel isomer 1 of B7- , was found to be 27 kcal mol(-1) higher in energy. The inversion in stability occurs due to the loss of the doubly aromatic character in the wheel-type global minimum isomer (C6v, 3A1) of B7- upon H2-addition. In contrast, the planar isomer of B7- (C2v, 1A1) gains aromatic character upon addition of two hydrogen atoms, which makes it more stable.
我们通过计算研究了氢化作用对阴离子B7-团簇低能异构体相对稳定性的影响。已知纯硼B7-团簇具有一个双重(σ和π)芳香性的C6v(3A1)准平面轮型三重态全局最小值(结构1),一个低能的σ芳香性和π反芳香性准平面单重态C2v (1A1)异构体2(比全局最小值高0.7千卡/摩尔),以及一个平面双重(σ和π)反芳香性的C2v (1A1)异构体3(比全局最小值高7.8千卡/摩尔)。然而,氢化后,这些物种的稳定性发生了反转。平面B7H 2- (C2v, 1A1)异构体4,由两个氢原子加到双重反芳香性的B7-异构体3上产生,成为全局最小结构。第二稳定的B7H2-异构体5,由B7-的准平面三重态轮型异构体1产生,其能量比异构体4高27千卡/摩尔。稳定性的反转是由于在B