Hulley Elliott B, Clennan Edward L
Department of Chemistry, University of Wyoming, Laramie, Wyoming 82071, United States.
J Am Chem Soc. 2024 Jan 10;146(1):1122-1131. doi: 10.1021/jacs.3c12400. Epub 2024 Jan 1.
A computational study (ωB97X-D/6-31G(d)) of the Mallory photocyclization reaction has revealed that the well-established dihydrophenanthrene (DHP) intermediates can adopt either closed-shell (CS) or open-shell-diradical (OS) singlet ground states. A detailed study of the properties of DHPs allowed their classifications as OS, borderline-OS, borderline-CS, or CS intermediates. The triplet electronic state and higher energy CS* isomer of all the OS singlet diradicals were computationally located, and the expected relationship between the diradical index, , and the triplet energy and the OS-CS* energy gaps was established. The importance of aromaticity in stabilizing the OS singlet diradicals was confirmed by using the Harmonic Oscillator Model of Aromaticity (HOMA). The thermal decompositions of DHPs by cycloreversions to regenerate the Mallory starting materials were also studied. The cycloreversion mechanism was described as a homolytic cleavage characterized by an anchimeric assistance continuum promoted by bis-β-homolytic cleavage.
一项关于马洛里光环化反应的计算研究(ωB97X-D/6-31G(d))表明,已得到充分证实的二氢菲(DHP)中间体可以采用闭壳层(CS)或开壳层双自由基(OS)单重态基态。对DHP性质的详细研究使其能够被分类为OS、边界OS、边界CS或CS中间体。通过计算确定了所有OS单重态双自由基的三重态电子态和更高能量的CS异构体,并建立了双自由基指数与三重态能量以及OS-CS能隙之间的预期关系。通过使用芳香性谐振子模型(HOMA)证实了芳香性在稳定OS单重态双自由基中的重要性。还研究了DHP通过环化逆反应热分解以再生马洛里起始原料的过程。环化逆反应机理被描述为一种均裂裂解,其特征是由双-β-均裂裂解促进的邻基协助连续过程。