Yockel Scott, Gawlik Evan, Wilson Angela K
Center for Advanced Scientific Computing and Modeling, Department of Chemistry, University of North Texas, Box 305070, Denton, Texas 76203-5070, USA.
J Phys Chem A. 2007 Nov 8;111(44):11261-8. doi: 10.1021/jp071242p. Epub 2007 Sep 19.
Density functional theory (B3LYP) and ab initio theory [second-order Møller-Plesset perturbation theory (MP2) and coupled-cluster theory including single, double, and quasiperturbative triple excitations (CCSD(T))] have been used in combination with the standard and augmented correlation consistent basis sets (cc-pVnZ and aug-cc-pVnZ, where n = D, T, and Q) to investigate potential new noble gas compounds. Two classes of molecules were studied: XNgCCNgX and XNgCCX, where Ng = Kr and Ar and X = F and Cl. These molecules were characterized by finding the ground-state structures and calculating the relative energies, charge distributions, and vibrational frequencies. In addition, transition-state structures were also determined and decomposition pathways were identified through intrinsic reaction coordinate calculations.
密度泛函理论(B3LYP)和从头算理论[二阶莫勒-普列斯特定则微扰理论(MP2)以及包含单、双和准微扰三激发的耦合簇理论(CCSD(T))]已与标准和增强的相关一致基组(cc-pVnZ和aug-cc-pVnZ,其中n = D、T和Q)结合使用,以研究潜在的新型稀有气体化合物。研究了两类分子:XNgCCNgX和XNgCCX,其中Ng = Kr和Ar,X = F和Cl。通过找到基态结构并计算相对能量、电荷分布和振动频率对这些分子进行了表征。此外,还确定了过渡态结构,并通过内禀反应坐标计算确定了分解途径。