Zhang Jian-Guo, Li Qian Shu, Zhang Shao-Wen
State Key Laboratory of Explosion Science and Technology, School of Science, Beijing Institute of Technology, Beijing 100081, PR China.
J Mol Model. 2006 Jan;12(2):190-6. doi: 10.1007/s00894-005-0017-7. Epub 2005 Aug 18.
The barrier and the potential-energy surface of the isomerization from aminoboranylidene (BNH2) to iminoborane (HBNH) have been studied using complete active space self-consistent field (CASSCF) with the 6-31 + G(d, p) basis set and higher-level energy methods. The rate constants of the isomerization reaction are reported by employing the direct ab initio dynamics method. The geometries of all the stationary points were optimized using the B3LYP and CCSD methods with the cc-pVTZ and cc-pVQZ basis sets. The information along the intrinsic reaction coordinate (IRC) was also calculated at the CASSCF/6-31 + G (d,p) level of theory. The energies were refined at the G3, G3MP2, G3MP2B3, CBS-Q, CBS-QB3, and two high-level (HL) methods based on the geometries optimized using CASSCF/6-31 + G(d,p). The rate constants were evaluated using conventional transition-state theory (TST), canonical variational transition-state theory (CVT), and canonical variational transition-state theory with small curvature tunneling correction (CVT/SCT) and conventional transition-state theory with Eckart tunneling correction (TST/Eckart). According to the calculated results, we conclude that the tunneling effect is very important to this isomerization reaction.
使用具有6-31 + G(d, p)基组的完全活性空间自洽场(CASSCF)方法以及更高层次的能量方法,研究了从氨基硼烯(BNH2)异构化为亚氨基硼烷(HBNH)的势垒和势能面。采用直接从头算动力学方法报道了异构化反应的速率常数。使用B3LYP和CCSD方法以及cc-pVTZ和cc-pVQZ基组对所有驻点的几何结构进行了优化。还在CASSCF/6-31 + G(d,p)理论水平上计算了沿内禀反应坐标(IRC)的信息。基于使用CASSCF/6-31 + G(d,p)优化的几何结构,在G3、G3MP2、G3MP2B3、CBS-Q、CBS-QB3以及两种高级(HL)方法下对能量进行了精修。使用传统过渡态理论(TST)、正则变分过渡态理论(CVT)、带小曲率隧穿校正的正则变分过渡态理论(CVT/SCT)以及带埃卡特隧穿校正的传统过渡态理论(TST/Eckart)对速率常数进行了评估。根据计算结果,我们得出结论,隧穿效应对于该异构化反应非常重要。