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首页> 外文期刊>Theoretical Chemistry Accounts >Variationally determined electronic states for the theoretical analysis of intramolecular interaction: I. Resonance energy and rotational barrier of the C–N bond in formamide and its analogs
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Variationally determined electronic states for the theoretical analysis of intramolecular interaction: I. Resonance energy and rotational barrier of the C–N bond in formamide and its analogs

机译:用于分子内相互作用的理论分析的变分电子态:I.甲酰胺及其类似物中C–N键的共振能和旋转势垒

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摘要

We present a new method that produces a variationally determined zeroth-order wave function for the analysis of intramolecular interactions between the fragments of a molecule. In our method, called the space-restricted wave function (SRW) method, this wave function is defined with nonorthogonal orbitals, which are obtained using the appropriately restricted variational spaces. The wave function thus obtained represents the electronic state with the target interactions deactivated, and it is constructed without unnecessarily breaking bonds, in contrast to some of the existing methods. Furthermore, we can perform energy decomposition analysis of intramolecular interactions using the zeroth-order functions that the SRW method yields. The validity of the SRW method is demonstrated in the analysis of the resonance energy and the rotational barrier of the C–N bond in formamide and its analogs. This method gives energy components that are different from those given by existing methods. With these components, we elucidate the origin of the rotational barrier from another point of view. Our SRW method gives meaningful results for the investigation of electron behavior and the nature of the molecular system.
机译:我们提出了一种新方法,该方法可产生变化确定的零阶波函数,用于分析分子片段之间的分子内相互作用。在我们的方法中,称为空间受限波函数(SRW)方法,该波函数是使用非正交轨道定义的,这些非正交轨道是使用适当受限的变分空间获得的。如此获得的波函数代表了目标相互作用被取消的电子状态,并且与某些现有方法相比,它在构建时不会不必要地破坏键。此外,我们可以使用SRW方法产生的零阶函数执行分子内相互作用的能量分解分析。通过分析甲酰胺及其类似物中C–N键的共振能和旋转势垒,证明了SRW方法的有效性。该方法所提供的能量成分与现有方法所提供的能量成分不同。通过这些组件,我们从另一个角度阐明了旋转屏障的起源。我们的SRW方法为研究电子行为和分子系统的性质提供了有意义的结果。

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