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Atomic energy analysis of cooperativity, anti-cooperativity, and non-cooperativity in small clusters of methanol, water, and formaldehyde

机译:甲醇,水和甲醛小分子簇中的协同性,反协同性和非协同性的原子能分析

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The local and regional stabilities in clusters of water, methanol, and formaldehyde up to the tetramers have been analyzed from an atomic energy perspective. We optimize structures at the MP2/6-311++G(d,p) level with some CCSD(T)/6-311++G(d,p) single point energies, and then decompose the electronic densities into atomic parts using the atoms in molecules (AIM) approach. We consider the changes in atomic energy in the clusters vs. the isolated monomer. This method of analysis allows us to reveal the variety of stabilities within these hydrogen-bonded clusters, including indications of cooperative, anti-cooperative, and non-cooperative interactions. Cooperatively interacting clusters have increasing stability at the atomic level as the cluster size grows. This is not observed in the anti- and non-cooperative arrangements of water and formaldehyde clusters. The cooperativity in methanol clusters is dominated by the OH regions, with negligible energy change in the methyl regions. Formaldehyde clusters, including the lowest minimum "bucket" cluster, do not show significant cooperativity. Atomic energy analysis is supported with bond critical point data as well as charge and geometric values. We represent the local stability in the clusters using a simple visual approach that allows areas of increased or decreased stability to be easily interpreted. (C) 2014 Elsevier B.V. All rights reserved.
机译:从原子能角度分析了水,甲醇和甲醛中直至四聚体的局部和区域稳定性。我们使用一些CCSD(T)/ 6-311 ++ G(d,p)单点能量在MP2 / 6-311 ++ G(d,p)级别上优化结构,然后将电子密度分解为原子部分使用分子中的原子(AIM)方法。我们考虑了簇中原子能相对于孤立单体的变化。这种分析方法使我们能够揭示这些氢键簇中的各种稳定性,包括合作,反合作和非合作相互作用的迹象。随着群集大小的增长,相互协作的群集在原子级别上的稳定性不断提高。在水和甲醛簇的反和非合作布置中未观察到这一点。甲醇簇中的协同性受OH区控制,而甲基区的能量变化可忽略不计。甲醛簇,包括最低的最小“桶”簇,没有显示出明显的协同性。结合临界点数据以及电荷和几何值可支持原子能分析。我们使用简单的视觉方法表示群集中的局部稳定性,该方法可以轻松地解释增加或减少的区域。 (C)2014 Elsevier B.V.保留所有权利。

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