Sengupta Arkajyoti, Houk K N
Department of Chemistry and Biochemistry, University of California, Los Angeles, California 90095, United States.
J Phys Chem A. 2023 Sep 28;127(38):7976-7983. doi: 10.1021/acs.jpca.3c05656. Epub 2023 Sep 15.
Quantum mechanical calculations and molecular dynamics simulations have elucidated the reaction mechanism for intramolecular cycloadditions of a heptafulvenyl-fulvene tethered by a trimethylene chain. Prior experiments by Liu and Houk reported the formation of only an -[8+6] cycloadduct at 185 °C. Liu et al. later reported an -[4+2] Diels-Alder cycloadduct as the major product at 140 °C (, , , 9171). Cycloadditions involve Diels-Alder and an ambimodal intramolecular tripericyclic [8+6]/[6+4]/[4+2] cycloaddition. The mechanistic details explain the experimental reports of temperature dependence on the periselectivity of intramolecular cycloadditions. Additional calculations with multireference-based methods CASSCF and NEVPT2 highlight the artifacts of DFT methods and single-reference wavefunction-based CCSD(T) in the description of complete potential energy surface involving various cycloadditions of the heptafulvenyl-fulvene.
量子力学计算和分子动力学模拟阐明了由三亚甲基链连接的庚搭烯基-富烯分子内环加成反应的机理。刘和霍克之前的实验报告称,在185°C时仅形成一种-[8+6]环加成产物。刘等人后来报告称,在140°C时,一种-[4+2]狄尔斯-阿尔德环加成产物是主要产物(,,,9171)。环加成反应涉及狄尔斯-阿尔德反应和一种双峰分子内三周环[8+6]/[6+4]/[4+2]环加成反应。这些机理细节解释了关于分子内环加成反应周环选择性的温度依赖性的实验报告。使用基于多参考的方法CASSCF和NEVPT2进行的额外计算突出了密度泛函理论方法和基于单参考波函数的CCSD(T)在描述涉及庚搭烯基-富烯各种环加成反应的完整势能面时的假象。