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水的多晶型性的实验研究。 II. 中高压下 HDA 和 VHDA 之间的等压转变。

Experimental study of the polyamorphism of water. II. The isobaric transitions between HDA and VHDA at intermediate and high pressures.

机构信息

Institute of Physical Chemistry, University of Innsbruck, Innrain 52c, A-6020 Innsbruck, Austria.

出版信息

J Chem Phys. 2018 Mar 28;148(12):124509. doi: 10.1063/1.5019414.

Abstract

Since the first report of very-high density amorphous ice (VHDA) in 2001 [T. Loerting et al., Phys. Chem. Chem. Phys. 3, 5355-5357 (2001)], the status of VHDA as a distinct amorphous ice has been debated. We here study VHDA and its relation to expanded high density amorphous ice (eHDA) on the basis of isobaric heating experiments. VHDA was heated at 0.1 ≤ p ≤ 0.7 GPa, and eHDA was heated at 1.1 ≤ p ≤ 1.6 GPa to achieve interconversion. The behavior upon heating is monitored using in situ volumetry as well as ex situ X-ray diffraction and differential scanning calorimetry. We do not observe a sharp transition for any of the isobaric experiments. Instead, a continuous expansion (VHDA) or densification (eHDA) marks the interconversion. This suggests that a continuum of states exists between VHDA and HDA, at least in the temperature range studied here. This further suggests that VHDA is the most relaxed amorphous ice at high pressures and eHDA is the most relaxed amorphous ice at intermediate pressures. It remains unclear whether or not HDA and VHDA experience a sharp transition upon isothermal compression/decompression at low temperature.

摘要

自 2001 年首次报道非常高密度非晶冰 (VHDA) [T. Loerting 等人,Phys. Chem. Chem. Phys. 3, 5355-5357 (2001)]以来,VHDA 是否为一种独特的非晶冰一直存在争议。我们在此基于等压加热实验研究 VHDA 及其与扩展高密非晶冰 (eHDA) 的关系。VHDA 在 0.1 ≤ p ≤ 0.7 GPa 下加热,eHDA 在 1.1 ≤ p ≤ 1.6 GPa 下加热以实现相互转化。通过原位体积测量以及非原位 X 射线衍射和差示扫描量热法监测加热过程中的行为。我们没有观察到任何等压实验的明显转变。相反,连续的膨胀(VHDA)或致密化(eHDA)标志着相互转化。这表明在 VHDA 和 HDA 之间至少在研究的温度范围内存在连续的状态。这进一步表明,VHDA 是高压下最松弛的非晶冰,而 eHDA 是中压下最松弛的非晶冰。尚不清楚 HDA 和 VHDA 在低温下等温压缩/减压时是否会发生明显转变。

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