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The Dynamical Behavior of the s-Trioxane Radical Cation—A Low-Temperature EPR and Theoretical Study

机译:s-三恶烷自由基阳离子的动力学行为—低温EPR及其理论研究

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摘要

The radical cation of s-trioxane, radiolytically generated in a freon (CF3CCl3) matrix, was studied in the 10–140 K temperature region. Reversible changes of the EPR spectra were observed, arising from both ring puckering and ring inversion through the molecular plane. The ESREXN program based on the Liouville density matrix equation, allowing the treatment of dynamical exchange, has been used to analyze the experimental results. Two limiting conformer structures of the s-trioxane radical cation were taken into account, namely “rigid” half-boat and averaged planar ones, differing strongly in their electron distribution. The spectrum due to the “rigid” half-boat conformer can be observed only at very low (<60 K) temperatures, when the exchange of conformers is very slow. Two transition states for interconversion by puckering and ring-inversion were identified, close in activation energy (2.3 and 3.0 kJ/mol calculated). Since the energy difference is very small, both processes set on at a comparable temperature. In the case of nearly complete equilibration (fast exchange) between six energetically equivalent structures at T > 120 K in CF3CCl3, a septet due to six equivalent protons (hfs splitting constant 5.9 mT) is observed, characteristic of the dynamically averaged planar geometry of the radical cation. DFT quantum chemical calculations and spectral simulation including intramolecular dynamical exchange support the interpretation.
机译:在10–140 K的温度范围内研究了氟利昂(CF3CCl3)基质中辐射分解产生的S-三恶烷的自由基阳离子。观察到EPR光谱的可逆变化,这是由于分子结构中的环起皱和环反转引起的。基于Liouville密度矩阵方程的ESREXN程序可以处理动态交换,已用于分析实验结果。考虑到了s-三恶烷自由基阳离子的两个限制性构象结构,即“刚性”半晶舟和平均平面晶舟,它们的电子分布差异很大。只有在非常低的温度(<60 K)下,当换模器的更换非常缓慢时,才能观察到由于“刚性”半船形换能器引起的光谱。确定了两个通过褶皱和环转化进行相互转化的过渡态,其活化能接近(计算出的能量为2.3和3.0 kJ / mol)。由于能量差很小,因此两个过程的温度都相当。在CF3CCl3中,T> 120 K时,六个能量等效结构之间几乎完全平衡(快速交换)时,观察到由于六个等效质子(hfs分裂常数为5.9 mT)而产生的九个峰,这是该结构的动态平均平面几何特征自由基阳离子。 DFT量子化学计算和光谱模拟(包括分子内动力学交换)支持该解释。

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