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冰的多形转变及液-液临界点的传播

Propagation of the polyamorphic transition of ice and the liquid-liquid critical point.

作者信息

Mishima Osamu, Suzuki Yoshiharu

机构信息

Advanced Materials Laboratory, National Institute for Materials Science, 1-1 Namiki, Tsukuba, 305-0044 Japan.

出版信息

Nature. 2002 Oct 10;419(6907):599-603. doi: 10.1038/nature01106.

Abstract

Water has a rich metastable phase behaviour that includes transitions between high- and low-density amorphous ices, and between high- and low-density supercooled liquids. Because the transitions occur under conditions where crystalline ice is the stable phase, they are challenging to probe directly. In the case of the liquids, it remains unclear whether their mutual transformation at low temperatures is continuous, or discontinuous and terminating at a postulated second critical point of water that is metastable with respect to crystallization. The amorphous ices are more amenable to experiments, which have shown that their mutual transformation is sharp and reversible. But the non-equilibrium conditions of these studies make a firm thermodynamic interpretation of the results difficult. Here we use Raman spectroscopy and visual inspection to show that the transformation of high-density to low-density amorphous ices involves the propagation of a phase boundary-a region containing a mixture of both ices. We find that the boundary region becomes narrower as the transformation progresses, and at higher transformation temperatures. These findings strongly suggest that the polyamorphic ice transition is discontinuous; a continuous transformation should occur uniformly over the entire sample. Because the amorphous ices are structurally similar to their supercooled liquid counterparts, our results also imply that the liquids transform discontinuously at low temperatures and thus support the liquid-liquid critical-point theory.

摘要

水具有丰富的亚稳相行为,包括高密度和低密度非晶冰之间以及高密度和低密度过冷液体之间的转变。由于这些转变发生在结晶冰为稳定相的条件下,因此直接探测具有挑战性。对于液体而言,目前尚不清楚它们在低温下的相互转变是连续的还是不连续的,以及是否在相对于结晶呈亚稳的假定水的第二个临界点处终止。非晶冰更适合进行实验,实验表明它们的相互转变是急剧且可逆的。但是这些研究的非平衡条件使得对结果进行可靠的热力学解释变得困难。在这里,我们使用拉曼光谱和目视检查表明,高密度非晶冰到低密度非晶冰的转变涉及相界的传播——一个包含两种冰混合物的区域。我们发现,随着转变的进行以及在更高的转变温度下,边界区域会变窄。这些发现强烈表明多晶型冰转变是不连续的;连续转变应该在整个样品上均匀发生。由于非晶冰在结构上与其过冷液体对应物相似,我们的结果还意味着液体在低温下会发生不连续转变,从而支持液 - 液临界点理论。

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