Viegas Luís P, M Nunes Cláudio, Fausto Rui
University of Coimbra, CQC, Department of Chemistry, 3004-535 Coimbra, Portugal.
Phys Chem Chem Phys. 2021 Mar 18;23(10):5797-5803. doi: 10.1039/d1cp00076d.
In 1975, Buchwalter and Closs reported one of the first examples of heavy-atom quantum mechanical tunneling (QMT) by studying the ring closure of triplet cyclopentane-1,3-diyl to singlet bicyclo[2.1.0]pentane in cryogenic glasses. Since then, no clear theoretical evidence has been provided to elucidate how the intersystem crossing (ISC) and QMT are related in the reaction mechanism. In this work, we unequivocally show that at cryogenic temperatures, the ISC occurs solely in the quantum tunneling regime, with weak coupling non-adiabatic transition state theory rate constants predicting a spontaneous reaction in fair agreement with experimental observations. Despite its limitations, such an approach can be used to help unlock a comprehensive understanding of a variety of spin-forbidden chemical reactions in the low temperature regime.
1975年,布赫瓦尔特和克洛斯通过研究低温玻璃态下三重态环戊烷-1,3-二基到单重态双环[2.1.0]戊烷的闭环反应,报道了重原子量子力学隧穿(QMT)的首批实例之一。从那时起,尚未有明确的理论证据来阐明在反应机理中系间窜越(ISC)与QMT是如何相关的。在这项工作中,我们明确表明,在低温下,ISC仅在量子隧穿区域发生,弱耦合非绝热过渡态理论速率常数预测的自发反应与实验观察结果相当吻合。尽管有其局限性,但这种方法可用于帮助全面理解低温区域中各种自旋禁阻化学反应。