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Unexpected reversal of stability in strained systems containing one-electron bonds

机译:含有单电子键的紧张系统中的意外逆转

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Ring strain energy is a very well documented feature of neutral cycloalkanes, and influences their structural, thermochemical and reactivity properties. In this work, we apply density functional theory and high-level coupled cluster calculations to describe the geometry and relative stability of C6H12+ radical cations, whose cyclic isomers are prototypes of singly-charged cycloalkanes. Molecular ions with the mentioned stoichiometry were produced via electron impact experiments using a gaseous cyclohexane sample (20-2000 eV). From our calculations, in addition to structures that resemble linear and branched alkenes as well as distinct conformers of cyclohexane, we have found low-lying species containing three-, four- and five-membered rings with the presence of an elongated C-C bond. Remarkably, the stability trend of these ring-bearing radical cations is anomalous, and the three-membered species are up to 11.3 kcal mol(-1) more stable than the six-membered chair structure. Generalized Valence Bond calculations and the Spin Coupled theory with N electrons and M orbitals were used in conjunction with the Generalized Product Function Energy Partitioning (GPF-EP) method and Interference Energy Analysis (IEA) to describe the chemical bonding in such moieties. Our results confirm that these elongated C-C motifs are one-electron sigma bonds. Our calculations also reveal the effects that drive thermochemical preference of strained systems over their strained-free isomers, and the origin of the unusual stability trend observed for cycloalkane radical cations.
机译:环应变能是中性环烷烃的非常良好的记录特征,并影响其结构,热化学和反应性性能。在这项工作中,我们应用密度泛函理论和高级耦合簇计算,描述C6H12 +自由基阳离子的几何形状和相对稳定性,其环状异构体是单电荷的环烷烃的原型。通过使用气态环己烷样品(20-2000eV)通过电子冲击实验生产具有所提到的化学计量的分子离子。从我们的计算外,除了像素和支链烯烃的结构外以及环己烷的不同赋形剂外,我们发现含有三个,四个和五元环的低位,具有细长的C-C键。值得注意的是,这些环形自由基阳离子的稳定性趋势是异常的,并且三元物种高达11.3千卡摩尔(-1)比六元椅结构更稳定。与N电子和M轨道的广义价键计算和旋转偶联理论与广义产品功能能量分配(GPF-EP)方法和干扰能量分析(IEA)结合使用,以描述这些部分中的化学键。我们的结果证实,这些细长的C-C主题是单秒形织物。我们的计算还揭示了在不含不紧张的异构体上推动应变体系的热化学偏好的影响,并且对环烷烃自由基阳离子观察到不寻常的稳定趋势的起源。

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