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疏水性:密度和有序性对水的旋转减速的影响。

Hydrophobicity: effect of density and order on water's rotational slowing down.

作者信息

Titantah John Tatini, Karttunen Mikko

机构信息

Department of Applied Mathematics, University of Western Ontario, 1151 Richmond Street North, London, Ontario, Canada N6A 5B7.

出版信息

Soft Matter. 2015 Oct 28;11(40):7977-85. doi: 10.1039/c5sm00930h. Epub 2015 Sep 1.

Abstract

Ab initio molecular dynamics (AIMD) simulations of over 4.5 ns were performed in the temperature range of T = 260-350 K with van der Waals corrections to investigate the relationship between local water density and tetrahedral order in bulk water and in the presence of a hydrophobe, tetramethylurea (TMU). We demonstrate that in bulk water, defects consisting of 5- and higher coordinated water are a major contributor to dynamics. Close to a hydrophobe, 3-coordinated defects take over. The co-existence of these defects gives rise to very different local densities. We propose that the slowing down of rotational motion close to a hydrophobe is induced by an interplay between density and order with the slowing down decreasing in the following order: (i) low-density ordered-water, (ii) normal-density ordered-water, (iii) high-density ordered-water and (iv) disordered-water. The proportions of these water environments vary with temperature. These local environments also support the idea of water's polymorphism, i.e., the existence of the high- and low-density states in supercooled water.

摘要

在260 - 350 K的温度范围内,采用含范德华修正的从头算分子动力学(AIMD)模拟,模拟时长超过4.5纳秒,以研究本体水以及在存在疏水物四甲基脲(TMU)的情况下局部水密度与四面体有序性之间的关系。我们证明,在本体水中,由五配位及更高配位水组成的缺陷是动力学的主要贡献因素。在靠近疏水物处,三配位缺陷起主导作用。这些缺陷的共存导致了非常不同的局部密度。我们提出,靠近疏水物时旋转运动的减慢是由密度和有序性之间的相互作用引起的,减慢程度按以下顺序递减:(i)低密度有序水,(ii)正常密度有序水,(iii)高密度有序水,(iv)无序水。这些水环境的比例随温度变化。这些局部环境也支持了水的多态性观点,即过冷水存在高密度和低密度状态。

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