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少于四个相邻水分子的密度、弹性和稳定性异常

Density, Elasticity, and Stability Anomalies of Water Molecules with Fewer than Four Neighbors.

作者信息

Sun Chang Q, Zhang Xi, Zhou Ji, Huang Yongli, Zhou Yichun, Zheng Weitao

机构信息

Key Laboratory of Low-Dimensional Materials and Application Technologies and Faculty of Materials and Optoelectronics and Physics, Xiangtan University , Hunan 411105, China.

School of Electrical and Electronic Engineering, Nanyang Technological University , Singapore 639798.

出版信息

J Phys Chem Lett. 2013 Aug 1;4(15):2565-70. doi: 10.1021/jz401029z. Epub 2013 Jul 23.

Abstract

Goldschmidt-Pauling contraction of the H-O polar-covalent bond elongates and polarizes the other noncovalent part of the hydrogen bond (O:H-O), that is, the O:H van der Waals bond, significantly, through the Coulomb repulsion between the electron pairs of adjacent oxygen (O-O). This process enlarges and stiffens those H2O molecules having fewer than four neighbors such as molecular clusters, hydration shells, and the surface skins of water and ice. The shortening of the H-O bond raises the local density of bonding electrons, which in turn polarizes the lone pairs of electrons on oxygen. The stiffening of the shortened H-O bond increases the magnitude of the O1s binding energy shift, causes the blue shift of the H-O phonon frequencies, and elevates the melting point of molecular clusters and ultrathin films of water, which gives rise to their elastic, hydrophobic, highly-polarized, ice-like, and low-density behavior at room temperature.

摘要

H-O 极性共价键的戈德施密特-鲍林收缩显著地拉长并极化了氢键(O:H-O)的其他非共价部分,即 O:H 范德华键,这是通过相邻氧原子(O-O)电子对之间的库仑排斥作用实现的。这个过程会使那些邻居少于四个的水分子(如分子簇、水合壳以及水和冰的表面层)变大并变硬。H-O 键的缩短提高了成键电子的局部密度,进而使氧原子上的孤对电子极化。缩短的 H-O 键变硬增加了 O1s 结合能位移的幅度,导致 H-O 声子频率发生蓝移,并提高了分子簇和水的超薄膜的熔点,这使得它们在室温下呈现出弹性、疏水、高度极化、类冰和低密度的行为。

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