Gasser Tobias M, Thoeny Alexander V, Plaga Lucie J, Köster Karsten W, Etter Martin, Böhmer Roland, Loerting Thomas
Institute of Physical Chemistry , University of Innsbruck , 6020 Innsbruck , Austria . Email:
Fakultät Physik , Technische Universität Dortmund , D-44221 Dortmund , Germany.
Chem Sci. 2018 Mar 26;9(18):4224-4234. doi: 10.1039/c8sc00135a. eCollection 2018 May 14.
In the last twelve years five new ice phases were experimentally prepared. Two of them are empty clathrate hydrates and three of them represent hydrogen ordered counterparts of previously known disordered ice phases. Here, we report on hydrogen ordering in ice VI samples produced by cooling at pressures up to 2.00 GPa. Based on results from calorimetry, dielectric relaxation spectroscopy, Raman spectroscopy, and powder X-ray diffraction the existence of a second hydrogen ordered polymorph related to ice VI is suggested. Powder X-ray data show the oxygen network to be the one of ice VI. For the 1.80 GPa sample the activation energy from dielectric spectroscopy is 45 kJ mol, which is much larger than for the known hydrogen ordered proxy of ice VI, ice XV. Raman spectroscopy indicates the 1.80 GPa sample to be more ordered than ice XV. It is further distinct from ice XV in that it experiences hydrogen disordering above ≈103 K which is 26 K below the ice XV to ice VI disordering transition. Consequently, below 103 K it is thermodynamically more stable than ice XV, adding a stability region to the phase diagram of water. For the time being we suggest to call this new phase ice β-XV and to relabel it ice XVIII once its crystal structure is known.
在过去的十二年里,通过实验制备出了五种新的冰相。其中两种是空笼形水合物,另外三种是先前已知无序冰相的氢有序对应物。在此,我们报告了在高达2.00吉帕的压力下冷却产生的冰VI样品中的氢有序情况。基于量热法、介电弛豫光谱法、拉曼光谱法和粉末X射线衍射的结果,表明存在与冰VI相关的第二种氢有序多晶型物。粉末X射线数据显示氧网络是冰VI的氧网络。对于1.80吉帕的样品,介电光谱法测得的活化能为45千焦/摩尔,这比已知的冰VI的氢有序类似物冰XV的活化能大得多。拉曼光谱表明1.80吉帕的样品比冰XV更有序。它与冰XV的进一步区别在于,它在约103 K以上经历氢无序化,这比冰XV到冰VI的无序化转变温度低26 K。因此,在103 K以下,它在热力学上比冰XV更稳定,这为水的相图增加了一个稳定区域。目前我们建议将这个新相称为冰β-XV,一旦其晶体结构已知,就将其重新命名为冰XVIII。