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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 >Full vs. constrain geometry optimization in the open-closed method in estimating the energy of intramolecular charge-inverted hydrogen bonds
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Full vs. constrain geometry optimization in the open-closed method in estimating the energy of intramolecular charge-inverted hydrogen bonds

机译:在估计分子内电荷转化的氢键能量时,采用开闭方法对几何形状进行完全与约束的几何优化

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We investigate several variants of the open-closed method to estimate the energy of the intramolecular charge-inverted hydrogen bond in model systems. We show that, depending on whether the geometry of the reference open system is partially or fully optimized, the estimated value of the energy may be from a wide range. It seems that the most reasonable reference system should have geometry parameters optimized but with the simultaneous freezing of those geometry parameters whose relaxation may lead to the significant change in the bonding pattern. Results obtained by means of two other estimating methods are studied. Reasonable estimates of energy values can be obtained only if full geometry optimizations of the molecules being components of the isodesmic reaction do not lead to any significant difference in the bonding pattern comparing with that of the interaction-bonded system. All calculations were performed using the B3LYP/aug-cc-pVTZ approximation.
机译:我们研究了开闭方法的几种变体,以估计模型系统中分子内电荷转化的氢键的能量。我们表明,根据参考开放系统的几何结构是部分优化还是完全优化,能量的估计值可能来自较大范围。似乎最合理的参考系统应优化几何参数,但同时冻结那些几何参数,其松弛可能会导致键合样式发生重大变化。研究了通过其他两种估计方法获得的结果。仅当作为等渗反应组成部分的分子的完整几何优化不导致键合模式与相互作用键合系统的键合模式没有任何显着差异时,才能获得能量值的合理估计。所有计算均使用B3LYP / aug-cc-pVTZ近似值进行。

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