Department of Chemistry, Durham University, South Road, Durham DH1 3LE, UK.
Phys Chem Chem Phys. 2011 Nov 7;13(41):18468-80. doi: 10.1039/c1cp21712g. Epub 2011 Sep 22.
Our recent discovery of three new phases of ice has increased the total number of known distinct polymorphs of ice to fifteen. In this Perspective article, we give a brief account of previous work in the field, and discuss some of the particularly interesting open questions that have emerged from recent studies. These include (i) the effectiveness of acid and base dopants to enable hydrogen-ordering processes in the ices, (ii) the comparison of the calorimetric data of some of the crystalline phases of ice and low-density amorphous ice, (iii) the disagreement between the experimental ice XV structure and computational predictions, (iv) the incompleteness of some of the hydrogen order/disorder pairs and (v) the new frontiers at the high and negative pressure ends of the phase diagram.
我们最近发现了三种新的冰相,这将已知的冰的独特多晶型总数增加到了十五种。在这篇观点文章中,我们简要介绍了该领域的先前工作,并讨论了最近的研究中出现的一些特别有趣的开放性问题。这些问题包括:(i)酸和碱掺杂剂在冰中促进氢键有序过程的有效性,(ii)一些冰的结晶相和低密度非晶冰的量热数据的比较,(iii)实验冰 XV 结构与计算预测之间的不一致,(iv)一些氢键有序/无序对的不完整,以及(v)在相图的高压和负压端的新前沿。