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负压下冰成核过程中的异常行为。

Anomalous Behavior in the Nucleation of Ice at Negative Pressures.

作者信息

Bianco Valentino, de Hijes P Montero, Lamas Cintia P, Sanz Eduardo, Vega Carlos

机构信息

Departamento de Quimica Fisica, Facultad de Quimica, Universidad Complutense de Madrid, Ciudad Universitaria, Madrid 28040, Spain.

出版信息

Phys Rev Lett. 2021 Jan 8;126(1):015704. doi: 10.1103/PhysRevLett.126.015704.

Abstract

Ice nucleation is a phenomenon that, despite the relevant implications for life, atmospheric sciences, and technological applications, is far from being completely understood, especially under extreme thermodynamic conditions. In this work we present a computational investigation of the homogeneous ice nucleation at negative pressures. By means of the seeding technique we estimate the size of the ice critical nucleus N_{c} for the TIP4P/Ice water model. This is done along the isotherms 230, 240, and 250 K, from positive to negative pressures until reaching the liquid-gas kinetic stability limit (where cavitation cannot be avoided). We find that N_{c} is nonmonotonic upon depressurization, reaching a minimum at negative pressures in the doubly metastable region of water. According to classical nucleation theory we establish the nucleation rate J and the surface tension γ, revealing a retracing behavior of both when the liquid-gas kinetic stability limit is approached. We also predict a reentrant behavior of the homogeneous nucleation line. The reentrance of these properties is related to the reentrance of the coexistence line at negative pressure, revealing new anomalies of water. The results of this work suggest the possibility of having metastable samples of liquid water for long times at negative pressure provided that heterogeneous nucleation is suppressed.

摘要

冰核化是一种现象,尽管其对生命、大气科学和技术应用具有重要意义,但仍远未被完全理解,尤其是在极端热力学条件下。在这项工作中,我们展示了对负压下均匀冰核化的计算研究。通过种子技术,我们估计了TIP4P/Ice水模型的冰临界核Nc的大小。这是沿着230、240和250 K等温线进行的,从正压到负压,直到达到液 - 气动力学稳定性极限(在此处无法避免空化)。我们发现,在减压过程中Nc是非单调的,在水的双亚稳区域的负压下达到最小值。根据经典成核理论,我们确定了成核速率J和表面张力γ,揭示了接近液 - 气动力学稳定性极限时两者的回溯行为。我们还预测了均匀成核线的折返行为。这些性质的折返与负压下共存线的折返有关,揭示了水的新异常现象。这项工作的结果表明,如果抑制异质成核,有可能在负压下长时间获得亚稳态液态水样品。

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