Singleton Daniel A, Hang Chao, Szymanski Michael J, Greenwald Erin E
Department of Chemistry, Texas A&M University, P.O. Box 30012, College Station, Texas 77842, USA.
J Am Chem Soc. 2003 Feb 5;125(5):1176-7. doi: 10.1021/ja027221k.
The intramolecular H/D kinetic isotope effect in the ene reaction of singlet oxygen with tetramethylethylene is studied using quasiclassical direct dynamics calculations on a B3LYP/6-31G* potential energy surface. Starting from the area of the energy surface around a valley-ridge inflection point, random trajectories lead to predominantly H abstraction over D abstraction, despite the symmetry of the surface and the absence of a barrier to either reaction. This demonstrates a new form of kinetic isotope effect, unrelated to the usual effect of zero-point energies on barriers. Dynamics calculations on the reaction of cis-2-pentene predict the experimentally observed mixture of regioisomeric products, while the minimum-energy path leads to only one product. For energy surfaces containing two adjacent saddle points, dynamics effects are important for understanding both product and isotopic selectivity, and this should be considered in the interpretation of experimental results.
利用在B3LYP/6 - 31G*势能面上的准经典直接动力学计算,研究了单线态氧与四甲基乙烯的烯反应中的分子内氢/氘动力学同位素效应。从谷底-脊顶拐点周围的能量表面区域出发,尽管表面具有对称性且两个反应均无势垒,但随机轨迹导致主要发生氢提取而非氘提取。这证明了一种新的动力学同位素效应形式,与零点能对势垒的通常影响无关。顺-2-戊烯反应的动力学计算预测了实验观察到的区域异构体产物混合物,而最小能量路径仅导致一种产物。对于包含两个相邻鞍点的能量表面,动力学效应对于理解产物和同位素选择性都很重要,在解释实验结果时应予以考虑。