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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Multireference correlation consistent composite approach [MR-ccCA]: Toward accurate prediction of the energetics of excited and transition state chemistry
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Multireference correlation consistent composite approach [MR-ccCA]: Toward accurate prediction of the energetics of excited and transition state chemistry

机译:多参考相关一致复合方法[MR-ccCA]:朝着激发态和过渡态化学能的准确预测

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The correlation consistent Composite Approach, ccCA [Deyonker, N. J.; Cundari, T. R.; Wilson, A. K. J. Chem. Phys. 2006, 124, 114104 ] has been demonstrated to predict accurate thermochemical properties of chemical species that can be described by a single configurational reference state, and at reduced computational cost, as compared with ab initio methods such as CCSD(T) used in combination with large basis sets. We have developed three variants of a multireference equivalent of this successful theoretical model. The method, called the multireference correlation consistent composite approach (MR-ccCA), is designed to predict the thermochemical properties of reactive intermediates, excited state species, and transition states to within chemical accuracy (e.g., 1 kcal/mol for enthalpies of formation) of reliable experimental values. In this study, we have demonstrated the utility of MR-ccCA: (1) in the determination of the adiabatic singlet-triplet energy separations and enthalpies of formation for the ground states for a set of diradicals and unsaturated compounds, and (2) in the prediction of energetic barriers to internal rotation, in ethylene and its heavier congener, disilene. Additionally, we have utilized MR-ccCA to predict the enthalpies of formation of the low-lying excited states of all the species considered. MR-ccCA is shown to give quantitative results without reliance upon empirically derived parameters, making it suitable for application to study novel chemical systems with significant nondynamical correlation effects.
机译:相关一致的复合方法,ccCA [Deyonker,N. J .; Cundari,T.R .;威尔逊,A。K. J.化学。物理2006,124,114104]已被证明可以预测化学物种的准确热化学性质,与像CCSD(T)这样的从头算方法结合使用时,可以用单一的配置参考状态来描述,并且可以降低计算成本。大基础集。我们已经开发了与该成功理论模型等效的多引用等效物的三个变体。该方法被称为多参考相关一致性复合方法(MR-ccCA),旨在预测反应中间体,激发态物质和过渡态的热化学性质,使其在化学精度内(例如,形成焓为1 kcal / mol)。可靠的实验值。在这项研究中,我们证明了MR-ccCA的效用:(1)确定一组双自由基和不饱和化合物的绝热单重态-三重态能量分离和形成焓,以及(2)预测乙烯及其较重的同系物二甲苯的内部旋转的能量壁垒。此外,我们已经利用MR-ccCA来预测所考虑的所有物种的低洼激发态形成的焓。 MR-ccCA已显示出定量结果,而无需依赖于经验得出的参数,使其适用于研究具有显着非动力学相关作用的新型化学系统。

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