Department of Chemistry and Biochemistry, Texas Tech University, Lubbock, Texas 79409-1061, USA.
J Chem Phys. 2010 Nov 14;133(18):184306. doi: 10.1063/1.3490480.
Electronic structure calculations at the CASSCF and UB3LYP levels of theory with the aug-cc-pVDZ basis set were used to characterize structures, vibrational frequencies, and energies for stationary points on the ground state triplet and singlet O(2)+C(2)H(4) potential energy surfaces (PESs). Spin-orbit couplings between the PESs were calculated using state averaged CASSCF wave functions. More accurate energies were obtained for the CASSCF structures with the MRMP2/aug-cc-pVDZ method. An important and necessary aspect of the calculations was the need to use different CASSCF active spaces for the different reaction paths on the investigated PESs. The CASSCF calculations focused on O(2)+C(2)H(4) addition to form the C(2)H(4)O(2) biradical on the triplet and singlet surfaces, and isomerization reaction paths ensuing from this biradical. The triplet and singlet C(2)H(4)O(2) biradicals are very similar in structure, primarily differing in their C-C-O-O dihedral angles. The MRMP2 values for the O(2)+C(2)H(4)→C(2)H(4)O(2) barrier to form the biradical are 33.8 and 6.1 kcal/mol, respectively, for the triplet and singlet surfaces. On the singlet surface, C(2)H(4)O(2) isomerizes to dioxetane and ethane-peroxide with MRMP2 barriers of 7.8 and 21.3 kcal/mol. A more exhaustive search of reaction paths was made for the singlet surface using the UB3LYP/aug-cc-pVDZ theory. The triplet and singlet surfaces cross between the structures for the O(2)+C(2)H(4) addition transition states and the biradical intermediates. Trapping in the triplet biradical intermediate, following (3)O(2)+C(2)H(4) addition, is expected to enhance triplet→singlet intersystem crossing.
采用 CASSCF 和 UB3LYP 理论水平与 aug-cc-pVDZ 基组对电子结构进行计算,以表征基态三重态和单重态 O(2)+C(2)H(4)势能面上(PES)的稳定点的结构、振动频率和能量。使用状态平均 CASSCF 波函数计算 PES 之间的自旋轨道耦合。使用 MRMP2/aug-cc-pVDZ 方法对 CASSCF 结构进行更精确的能量计算。这些计算的一个重要且必要的方面是需要为所研究的 PES 上的不同反应路径使用不同的 CASSCF 活性空间。CASSCF 计算集中在 O(2)+C(2)H(4)加成上,以在三重态和单重态表面上形成 C(2)H(4)O(2)双自由基,以及由此双自由基产生的异构化反应路径。三重态和单重态 C(2)H(4)O(2)双自由基在结构上非常相似,主要区别在于它们的 C-C-O-O 二面角。MRMP2 对三重态和单重态表面上形成双自由基的 O(2)+C(2)H(4)→C(2)H(4)O(2)势垒的价值分别为 33.8 和 6.1 kcal/mol。在单重态表面上,C(2)H(4)O(2)异构化为二氧杂环丁烷和过氧乙烷,MRMP2 势垒分别为 7.8 和 21.3 kcal/mol。使用 UB3LYP/aug-cc-pVDZ 理论对单重态表面进行了更详尽的反应路径搜索。三重态和单重态表面在 O(2)+C(2)H(4)加成过渡态和双自由基中间体的结构之间交叉。在三重态双自由基中间体中捕获,在(3)O(2)+C(2)H(4)加成之后,预计会增强三重态→单重态系间窜越。