College of Physics, Beihua University, Jilin 132013, China.
Phys Chem Chem Phys. 2013 Sep 7;15(33):14120-5. doi: 10.1039/c3cp51746b. Epub 2013 Jul 22.
Using a recently developed 'Crystal structure AnaLYsis by Particle Swarm Optimization' (CALYPSO) algorithm on a structural search, we predicted a novel sp(3) carbon allotrope possessing an orthorhombic lattice with the space group Cmmm (oC32). The calculated elastic constants and the simulated hardness revealed that oC32 simultaneously possesses ultra-incompressible and superhard properties with a high bulk modulus of 457 GPa and a high Vickers hardness of 96.2 GPa. This oC32 phase is dynamically stable and energetically more preferable than the experientially observed cold-compressed carbon, thus oC32 is expected to be experimentally synthesizable under extreme conditions. These results further expand the list of meta-stable carbon allotropes and superhard materials under atmospheric and extreme conditions.
利用最近开发的“基于粒子群优化的晶体结构分析”(CALYPSO)算法进行结构搜索,我们预测了一种具有正交晶格和 Cmmm 空间群(oC32)的新型 sp(3) 碳同素异形体。计算得到的弹性常数和模拟硬度表明,oC32 同时具有超不可压缩和超硬特性,体弹性模量高达 457 GPa,维氏硬度高达 96.2 GPa。该 oC32 相在动力学上是稳定的,能量上比实验观察到的冷压碳更有利,因此预计在极端条件下可以实验合成 oC32。这些结果进一步扩大了在大气和极端条件下的亚稳碳同素异形体和超硬材料的列表。