Institute of Physical Chemistry, University of Innsbruck, Innrain 52c, A-6020 Innsbruck, Austria.
J Chem Phys. 2018 Mar 28;148(12):124508. doi: 10.1063/1.5019413.
The existence of more than one solid amorphous state of water is an extraordinary feature. Since polyamorphism might be connected to the liquid-liquid critical point hypothesis, it is particularly important to study the relations amongst the different amorphous ices. Here we study the polyamorphic transformations of several high pressure amorphous ices to low-density amorphous ice (LDA) at 4 MPa by isobaric heating utilising in situ volumetry and ex situ X-ray diffraction. We find that very-high density amorphous ice (VHDA) and unannealed high density amorphous ice (HDA) show significant relaxation before transforming to LDA, whereby VHDA is seen to relax toward HDA. By contrast, expanded HDA shows almost no relaxation prior to the transformation. The transition to LDA itself obeys criteria for a first-order-like transition in all cases. In the case of VHDA, even macroscopic phase separation is observed. These findings suggest that HDA and LDA are two clearly distinct polyamorphs. We further present evidence that HDA reaches the metastable equilibrium at 140 K and 0.1 GPa but only comes close to that at 140 K and 0.2 GPa. The most important is the path independence of the amorphous phase reached at 140 K and 0.1 GPa.
存在不止一种固态无定形水的状态是一个非凡的特征。由于多晶型可能与液体-液体临界点假说有关,因此研究不同无定形冰之间的关系尤为重要。在这里,我们通过等压加热利用原位体积测量和非原位 X 射线衍射研究了几种高压无定形冰向低密度无定形冰(LDA)的多晶型转变。我们发现,非常高密度无定形冰(VHDA)和未经退火的高密度无定形冰(HDA)在向 LDA 转变之前会发生明显的弛豫,其中 VHDA 向 HDA 弛豫。相比之下,膨胀的 HDA 在转变之前几乎没有松弛。向 LDA 的转变本身在所有情况下都符合一级相变的标准。在 VHDA 的情况下,甚至观察到宏观相分离。这些发现表明 HDA 和 LDA 是两种明显不同的多晶型。我们进一步提供证据表明,HDA 在 140 K 和 0.1 GPa 下达到亚稳平衡,但仅在 140 K 和 0.2 GPa 下接近该平衡。最重要的是在 140 K 和 0.1 GPa 下达到的无定形相的路径独立性。