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Correlation between electron delocalization and structural planarization in small water rings

机译:小水环中电子离域与结构平面化的相关性

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The discovery of the covalent-like character of the hydrogen bonding (H-bonding) system [Science342, 611(2013)] has promoted a renewal of our understanding of the electronic and geometric structures of water clusters. In this work, based on density functional theory calculations, we show that the preferential formation of a stable quasiplanar structure of (H2O)(n)(n=3-6) is closely related to three kinds of delocalized molecular orbitals (MOs; denoted as MO-I, II, and III) of water rings. These originate from the 2p lone pair electrons of oxygen (O), the 2p bond electrons of O and the 1s electrons of H and the 2s electrons of O and 1s electrons of H, respectively. To maximize the orbital overlaps of the three MOs, geometric planarization is needed. The contribution of the orbital interaction is more than 30% in all the water rings according to our energy decomposition analysis, highlighting the considerable covalent-like characters of H-bonds. (c) 2015 Wiley Periodicals, Inc.
机译:氢键(H键)系统的类似共价特征的发现[Science342,611(2013)]促进了我们对水团簇电子和几何结构的认识的更新。在这项工作中,基于密度泛函理论计算,我们表明(H2O)(n)(n = 3-6)的稳定准平面结构的优先形成与三种离域分子轨道(MOs)密切相关;表示为(如MO-1,II和III)所示。它们分别来自氧的2p孤对电子(O),氧的2p键电子和H的1s电子,O的2s电子和H的1s电子。为了使三个MO的轨道重叠最大化,需要进行几何平面化。根据我们的能量分解分析,轨道相互作用在所有水环中的贡献均超过30%,突显了氢键的相当大的类似共价键的特征。 (c)2015年威利期刊有限公司

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