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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Explicit role of dynamical and nondynamical electron correlation on singlet-triplet splitting in carbenes
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Explicit role of dynamical and nondynamical electron correlation on singlet-triplet splitting in carbenes

机译:动态和非动态电子相关对卡宾糖单重态-三重态分裂的显式作用

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Density functional theoretical studies have been performed on carbene systems to determine the singlet-triplet splitting and also to explore the role of electron correlation. Using an approximate method of separation of dynamical and nondynamical correlation, it is found that dynamical and nondynamical electron correlation stabilizes the singlet state relative to the triplet for halo carbenes in both BLYP and B3LYP methods. Calculations performed on higher homologues of methylene suggest that beyond CH(CH3), both the electron correlations have leveling effect in stabilizing the singlet state relative to the triplet. It has also been observed while dynamical electron correlation fails to provide any substantial degree of stabilization to the singlet states of higher homologues of methylene in B3LYP method, an opposite trend is observed for nondynamical counterpart. Among the larger systems studied, (9-triptycyl)(alpha-naphthyl)-carbene has the highest stability of the triplet state whereas bis-imidazol-2-ylidenes has the most stable singlet state. Interestingly, the values of the dynamical electron correlation for each state of each system studied are different for the two methods used. The reason behind this apparent discrepancy lies in the fact that the coefficients of the LYP part in B3LYP and BLYP functionals are different. (c) 2006 Elsevier B.V. All rights reserved.
机译:在卡宾体系上进行了密度泛函理论研究,以确定单重态-三重态分裂,并探讨了电子相关性的作用。使用分离动力学和非动力学相关性的近似方法,发现在BLYP和B3LYP方法中,动力学和非动力学电子相关性相对于卤代卡宾的三重态稳定了单重态。对较高的亚甲基同系物进行的计算表明,除了CH(CH3)以外,两种电子相关性均具有稳定单重态相对于三重态的均化作用。还已经观察到,尽管在B3LYP方法中动态电子相关性无法为亚甲基的较高同系物的单重态提供任何实质性的稳定度,但对于非动态对应物却观察到相反的趋势。在研究的较大体系中,(9-三苯甲基)(α-萘基)-卡宾具有最高的三重态稳定性,而双-咪唑-2-亚烷基具有最稳定的单重态。有趣的是,对于所使用的两种方法,所研究的每个系统的每个状态的动态电子相关值都不同。这种明显差异背后的原因在于,B3LYP和BLYP功能中LYP部分的系数不同。 (c)2006 Elsevier B.V.保留所有权利。

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