Korotenko Vasilii, Zipse Hendrik
Department of Chemistry, LMU Munich, Munich, Germany.
J Comput Chem. 2024 Jan 15;45(2):101-114. doi: 10.1002/jcc.27221. Epub 2023 Sep 25.
The stability of various alkoxy/aryloxy/peroxy radicals, as well as TEMPO and triplet dioxygen ( O ) has been explored at a variety of theoretical levels. Good correlations between RSE and RSE are found for hybrid DFT methods, for compound schemes such as G3B3-D3, and also for DLPNO-CCSD(T) calculations. The effects of hydrogen bonding interactions on the stability of oxygen-centered radicals have been probed by addition of a single solvating water molecule. While this water molecule always acts as a H-bond donor to the oxygen-centered radical itself, it can act as a H-bond donor or acceptor to the respective closed-shell parent.
已在多种理论水平上探究了各种烷氧基/芳氧基/过氧自由基以及TEMPO和三线态双原子氧(O)的稳定性。对于杂化密度泛函理论方法、诸如G3B3-D3的复合方案以及DLPNO-CCSD(T)计算,均发现相对稳定能(RSE)与相对电子亲合能(RSE)之间存在良好的相关性。通过添加单个溶剂化水分子,研究了氢键相互作用对以氧为中心的自由基稳定性的影响。虽然该水分子始终作为氢键供体作用于以氧为中心的自由基本身,但它可以作为氢键供体或受体作用于各自的闭壳层母体。