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Structure and stability of the N-hydroxyurea dimer: Post-Hartree-Fock quantum mechanical study

机译:N-羟基脲二聚体的结构和稳定性:Hartree-Fock后量子力学研究

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The potential energy surface (PES) search of the N-hydroxyurea dimer was searched with second-order Moller-Plesset perturbation theory (MP2) and the 6-31G(d,p) basis set. Eight local minimum energy structures have been found. Four of them have relatively strong (Delta E similar to-10 to -13 kcal/mol) intermolecular interactions and the others are moderately strongly interacting species (Delta E similar to-3 to -7 kcal/mol). Final estimation of interaction energies was performed using the larger 6-311G(df,pd) and 6-311G(2df,2pd) basis sets. The predicted interaction energies are Delta E=-14.26 kcal/mol and -3.43 kcal/mol for the strongest and the weakest interacting forms of the studied complex, respectively, at the MP2/6-311G(2df,2pd)//MP2/6-31G(d,p) level of theory. The self-consistent field (SCF) interaction energy decomposition indicates the important influence of the deformation term magnitude on Delta E(SCF). The calculated electron correlation contribution to Delta E(MP2) depends on the geometry of the system and varies from -0.5 to -5 kcal/mol. The estimated influence of water on the stability (free energy of hydration) of N-hydroxyurea dimers using the self-consistent isodensity polarized continuum (SCI-PCM) model of solvation varies from similar to-11 kcal/mol to similar to-21 kcal/mol. The forms predicted to be more strongly interacting species in gas phase are less influenced by hydration than the more weakly interacting ones. (C) 2000 American Institute of Physics. [S0021-9606(00)30535-9]. [References: 14]
机译:使用二阶Moller-Plesset微扰理论(MP2)和6-31G(d,p)基集搜索N-羟基脲二聚体的势能面(PES)搜索。已经发现了八个局部最小能量结构。它们中的四个具有相对强的分子间相互作用(ΔE类似于-10至-13 kcal / mol),而其他四个则具有中等强度的相互作用物种(ΔE类似于-3至-7 kcal / mol)。相互作用能的最终估计是使用较大的6-311G(df,pd)和6-311G(2df,2pd)基集进行的。在MP2 / 6-311G(2df,2pd)// MP2 /处,对于所研究复合物的最强和最弱相互作用形式,预测的相互作用能分别为Delta E = -14.26 kcal / mol和-3.43 kcal / mol。 6-31G(d,p)的理论水平。自洽场(SCF)相互作用能分解表明变形项幅度对ΔE(SCF)的重要影响。计算出的对Delta E(MP2)的电子相关性贡献取决于系统的几何形状,并且在-0.5至-5 kcal / mol之间变化。使用自溶等价极化连续体(SCI-PCM)模型估计的水对N-羟基脲二聚体稳定性(水合自由能)的影响从近似11 kcal / mol到近似21 kcal /摩尔预测为气相中相互作用更强的物种的形式受水合影响的程度小于相互作用较弱的物种。 (C)2000美国物理研究所。 [S0021-9606(00)30535-9]。 [参考:14]

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