【2h】

Liquid water is a dynamic polydisperse branched polymer

机译:液态水是一种动态的多分散支化聚合物

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摘要

We developed the RexPoN force field for water based entirely on quantum mechanics. It predicts the properties of water extremely accurately, with Tmelt = 273.3 K (273.15 K) and properties at 298 K: ΔHvap = 10.36 kcal/mol (10.52), density = 0.9965 g/cm3 (0.9965), entropy = 68.4 J/mol/K (69.9), and dielectric constant = 76.1 (78.4), where experimental values are in parentheses. Upon heating from 0.0 K (ice) to 273.0 K (still ice), the average number of strong hydrogen bonds (SHBs, rOO ≤ 2.93 Å) decreases from 4.0 to 3.3, but upon melting at 273.5 K, the number of SHBs drops suddenly to 2.3, decreasing slowly to 2.1 at 298 K and 1.6 at 400 K. The lifetime of the SHBs is 90.3 fs at 298 K, increasing monotonically for lower temperature. These SHBs connect to form multibranched polymer chains (151 H2O per chain at 298 K), where branch points have 3 SHBs and termination points have 1 SHB. This dynamic fluctuating branched polymer view of water provides a dramatically modified paradigm for understanding the properties of water. It may explain the 20-nm angular correlation lengths at 298 K and the critical point at 227 K in supercooled water. Indeed, the 15% jump in the SHB lifetime at 227 K suggests that the supercooled critical point may correspond to a phase transition temperature of the dynamic polymer structure. This paradigm for water could have a significant impact on the properties for protein, DNA, and other materials in aqueous media.
机译:我们完全基于量子力学开发了水的RexPoN力场。它非常准确地预测了水的性质,Tmelt = 273.3 K(273.15 K),而在298 K时的性质:ΔHvap= 10.36 kcal / mol(10.52),密度= 0.9965 g / cm 3 (0.9965 ),熵= 68.4 J / mol / K(69.9)和介电常数= 76.1(78.4),其中实验值为括号内。从0.0 K(冰)加热到273.0 K(静止冰)时,强氢键(SHB,rOO≤2.93Å)的平均数量从4.0降低到3.3,但是在273.5 K熔化时,SHB的数量突然下降到2.3,在298 K时缓慢下降到2.1,在400 K时缓慢下降到1.6。SHB的寿命在298 K时为90.3 fs,在较低温度下单调增加。这些SHB连接形成多分支聚合物链(在298 K时,每条链151 H2O),其中分支点具有3个SHB,终止点具有1个SHB。这种动态波动的支化聚合物水视图为理解水的性质提供了显着修改的范例。它可以解释过冷水中298 K处20 nm的角度相关长度和227 K处的临界点。实际上,SHB寿命在227 K处跃升了15%,这表明过冷的临界点可能对应于动态聚合物结构的相变温度。水的这种范例可能会对水性介质中蛋白质,DNA和其他材料的特性产生重大影响。

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