论文标题

水分子不足必不可少的规则

Rules essential to water molecular undercoordination

论文作者

Sun, Chang Q

论文摘要

过去十年中开发的一系列概念使水冰及其低维异常的分辨率尤其是。开发的概念包括耦合的氢键振荡器对,节段特异性热,三体偶联电位,准脉络性和超验证性。 Resolved anomalies include ice buoyancy, ice slipperiness, water skin toughness, supercooling and superheating at the nanoscale, etc. Evidence shows consistently that molecular undercoordination shortens the HO bond and stiffens its phonon while undercoordination does the OH nonbond contrastingly associated with strong lone pair polarization, which endows the low-dimensional water ice with supersolidity. Supersolid相具有疏水性,密度较低,粘弹性,具有较长的电子和声子寿命,更散射和稳定。唯一的对和质子的数量相等数量,可保留耦合的氢键的构型和方向,并限制分子旋转和质子跳,这使水具有最简单,有序的,四面体配合的,波动的分子晶体,覆盖有阳性的皮肤。氢键键节段合作性和特定的热差异形成了灵魂,决定了受到物理扰动时的非凡适应性,反应性,可恢复性,水冰的敏感性。建议氢键和电子动力学的前提可以加深对水冰核心物理和化学的见解。

A sequential of concepts developed in last decade has enabled a resolution to multiple anomalies of water ice and its low-dimensionality, particularly. Developed concepts include the coupled hydrogen bond oscillator pair, segmental specific heat, three-body coupling potentials, quasisolidity, and supersolidity. Resolved anomalies include ice buoyancy, ice slipperiness, water skin toughness, supercooling and superheating at the nanoscale, etc. Evidence shows consistently that molecular undercoordination shortens the HO bond and stiffens its phonon while undercoordination does the OH nonbond contrastingly associated with strong lone pair polarization, which endows the low-dimensional water ice with supersolidity. The supersolid phase is hydrophobic, less dense, viscoelastic, thermally more diffusive and stable, having longer electron and phonon lifetime. The equal number of lone pairs and protons reserves the configuration and orientation of the coupled hydrogen bond bonds and restricts molecular rotation and proton hopping, which entitles water the simplest, ordered, tetrahedrally-coordinated, fluctuating molecular crystal covered with a supersolid skin. The hydrogen bond segmental cooperativity and specific-heat disparity form the soul dictating the extraordinary adaptivity, reactivity, recoverability, sensitivity of water ice when subjecting to physical perturbation. It is recommended that the premise of hydrogen bonding and electronic dynamics would deepen the insight into the core physics and chemistry of water ice.

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