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Theoretical Prediction of the Contact Distance Dependence of the Electron Transfer Reactivity of the C10/C1O~-Coupling System

机译:C10 / C1O〜-偶联体系电子转移反应的接触距离依赖性的理论预测

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On the basis of the structures and properties of the CIO/CIO system obtained at the density functional theory(DFT)(UB3LYP) level,employing the 6-311+G(3df) standard basis set,the electron transfer reactivity of this system is investigated.The results indicate that there are five possible stable coupling complexes that correspond to the generous minima on the global potential energy surfaces(PES).The most stable coupling complex is planar EC4,in which there is a O-O linkage with two trans-Cl atoms.Their stabilization energies are calculated to be 20.57(EC1:C_1),20.54(EC2:C_2,~2B),20.69(EC3:C_1),20.70(EC4:C_s,~2A'),and 20.69(EC.5:C_(2h),~2B_u) kcal/ mol at the B3LYP/6-311+G(3df) level;with the correction of the basis set superposition error(BSSE),the stability order of these encounter complexes is EC4 > EC.5 > EC3 > EC1 > EC2.Based on the five encounter complexes,five coupling modes are designed for the study of the electron transfer reactivity of this system.The dissociation energy curves at the activated states and the corresponding activation energies of these five coupling modes are obtained and are compared at the B3LYP/6-311+G(3df) and MP2/ 6-311+G~* levels.The inapplicability of DFT methods has also been discussed in this article in predicting the energy curves,especially with a long contact distance,in which DFT methods give the abnormal behavior for the dissociations of the complexes caused by the "inverse symmetry breaking" problem.On the basis of the golden rule of the time-dependent perturbation theory,the electron transfer reactivity and the contact distance dependence of the various electron transfer kinetics parameters(e.g.,activation energy,coupling matrix element) have been analyzed at the UMP2(full)/6-311+G~* level.The electron transfer can take place over a range of contact distances,but the most effective coupling distance corresponds to only a small range.The coupling orientation analyses also indicate that the most favorable coupling mode to the electron transfer does not always correspond to the most stable encounter complex mechanism.Some highly energetic coupling modes are more favorable for the electron transfer.
机译:根据在密度泛函理论(DFT)(UB3LYP)级别获得的CIO / CIO系统的结构和性质,采用6-311 + G(3df)标准基集,该系统的电子转移反应性为结果表明,存在五种可能的稳定偶合配合物,它们对应于全局势能面(PES)上的最大极小值。最稳定的偶合配合物是平面EC4,其中有一个带有两个反式Cl的OO键其稳定能经计算为20.57(EC1:C_1),20.54(EC2:C_2,〜2B),20.69(EC3:C_1),20.70(EC4:C_s,〜2A')和20.69(EC.5) :C_(2h),〜2B_u)kcal / mol在B3LYP / 6-311 + G(3df)水平上;通过校正基集叠加误差(BSSE),这些相遇配合物的稳定性顺序为EC4> EC .5> EC3> EC1> EC2。基于五个相遇复合物,设计了五种耦合模式来研究该系统的电子转移反应性。获得了激活态的es并获得了这五个耦合模式的相应激活能,并在B3LYP / 6-311 + G(3df)和MP2 / 6-311 + G〜*的水平上进行了比较.DFT方法的不适用性本文还讨论了预测能量曲线(特别是在长接触距离时)的问题,其中DFT方法给出了由“逆对称破坏”问题引起的配合物解离的异常行为。根据时变摄动理论,在UMP2(full)/ 6-311 + G〜处分析了各种电子传递动力学参数(例如活化能,耦合矩阵元素)的电子传递反应性和接触距离依赖性。 *能级。电子转移可以在一定的接触距离范围内发生,但最有效的耦合距离仅对应一个很小的范围。耦合取向分析还表明,对电子的最有利耦合模式电子传递并不总是对应最稳定的遭遇复杂机制,某些高能耦合模式更有利于电子传递。

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