State Key Lab of Superhard Materials, Jilin University, Changchun 130012, China.
Phys Rev Lett. 2010 Apr 30;104(17):177005. doi: 10.1103/PhysRevLett.104.177005. Epub 2010 Apr 29.
Using evolutionary methodology for crystal structure prediction, we explore high-pressure phases of CaLi2, a compound made of two elements that show anomalies upon compression. In addition to the known low-pressure Laves phases, we find two novel structures with space groups C2/c and P2{1}/c, stable at pressure ranges of 35-54 GPa and 54-105 GPa, respectively. It is found that decomposition into pure elements is energetically favorable at pressures of 20-35 GPa and above 105 GPa. Such decomposition-recombination-decomposition oscillating behavior with pressure is predicted for the first time in a binary compound. The C2/c and P2{1}/c phases are predicted to be superconductors, and the calculated T{c} of approximately 15 K at 45 GPa is in good agreement with experiment.
利用进化方法进行晶体结构预测,我们探索了 CaLi2 的高压相,这是一种由两种在压缩时表现出异常的元素组成的化合物。除了已知的低压 Laves 相之外,我们还发现了两种具有空间群 C2/c 和 P2{1}/c 的新型结构,分别在 35-54 GPa 和 54-105 GPa 的压力范围内稳定。研究发现,在 20-35 GPa 及以上的压力下,分解为纯元素在能量上是有利的。这种在二元化合物中首次预测到的随压力分解-再结合-再分解的振荡行为。预测 C2/c 和 P2{1}/c 相为超导体,在 45 GPa 时计算出的约 15 K 的 T{c}与实验结果吻合较好。