Aydeniz Yeliz, Oguz Funda, Yaman Arzu, Konuklar Aylin Sungur, Dogan Ilknur, Aviyente Viktorya, Klein Roger A
Department of Chemistry, Bogazici University, Bebek, Istanbul, Turkey.
Org Biomol Chem. 2004 Sep 7;2(17):2426-36. doi: 10.1039/B406556E. Epub 2004 Aug 4.
We have investigated the pairs of rotational isomers for six 3-(o-aryl)-5-methyl-rhodanines (Z = H, F, Cl, Br, OH, and CH3) using NMR spectroscopy and density functional theory (DFT) calculations. Electron density topological and NBO analysis has demonstrated the importance of non-covalent interactions, characterised by (3, -1) bond critical points (BCPs), between the oxygen and sulfur atoms on the thiazolidine ring with the aryl substitutents in stabilizing the transition states. The energetic activation barriers to rotation have also been determined using computational results; rotational barriers for 3-(o-chlorophenyl)-5-methyl-rhodanine (3S) and 3-(o-tolyl)-5-methyl-rhodanine (6S) were determined experimentally based on NMR separation of the diastereoisomeric pairs, and the first-order rate constants used to derive the value of the rotational barrier from the Eyring equation.
我们使用核磁共振光谱法和密度泛函理论(DFT)计算研究了六种3-(邻芳基)-5-甲基罗丹宁(Z = H、F、Cl、Br、OH和CH₃)的旋转异构体对。电子密度拓扑和自然键轨道(NBO)分析表明,噻唑烷环上的氧原子和硫原子与芳基取代基之间以(3,-1)键临界点(BCP)为特征的非共价相互作用在稳定过渡态方面具有重要性。还利用计算结果确定了旋转的能量活化势垒;基于非对映异构体对的NMR分离实验测定了3-(邻氯苯基)-5-甲基罗丹宁(3S)和3-(邻甲苯基)-5-甲基罗丹宁(6S)的旋转势垒,并使用一级速率常数从艾林方程推导出旋转势垒的值。