Galiakhmetova Leysan Kh, Pavlov Igor S, Bayazitov Ayrat M, Kosarev Igor V, Dmitriev Sergey V
Institute for Metals Superplasticity Problems of RAS, 450001 Ufa, Russia.
Mechanical Engineering Research Institute of the Russian Academy of Sciences-Branch of Federal Research Center "Institute of Applied Physics of RAS", 603024 Nizhny Novgorod, Russia.
Materials (Basel). 2022 Jul 13;15(14):4871. doi: 10.3390/ma15144871.
The fullerene family, whose most popular members are the spherical C60 and C70 molecules, has recently added a new member, the cube-shaped carbon molecule C8 called a cubene. A molecular crystal based on fullerenes is called fullerite. In this work, based on relaxational molecular dynamics, two fullerites based on cubenes are described for the first time, one of which belongs to the cubic system, and the other to the triclinic system. Potential energy per atom, elastic constants, and mechanical stress components are calculated as functions of lattice strain. It has been established that the cubic cubene crystal is metastable, while the triclinic crystal is presumably the crystalline phase in the ground state (the potential energies per atom for these two structures are -0.0452 and -0.0480 eV, respectively).The cubic phase has a lower density than the monoclinic one (volumes per cubene are 101 and 97.7 Å3). The elastic constants for the monoclinic phase are approximately 4% higher than those for the cubic phase. The presented results are the first step in studying the physical and mechanical properties of C8 fullerite, which may have potential for hydrogen storage and other applications. In the future, the influence of temperature on the properties of cubenes will be analyzed.
富勒烯家族中最广为人知的成员是球形的C60和C70分子,最近该家族又增添了一个新成员——立方体形的碳分子C8,即立方烷。基于富勒烯的分子晶体被称为富勒烯石。在这项工作中,首次基于弛豫分子动力学描述了两种基于立方烷的富勒烯石,其中一种属于立方晶系,另一种属于三斜晶系。计算了每个原子的势能、弹性常数和机械应力分量随晶格应变的变化关系。已经确定立方烷晶体是亚稳的,而三斜晶体可能是基态下的晶相(这两种结构中每个原子的势能分别为-0.0452和-0.0480电子伏特)。立方相的密度低于单斜相(每个立方烷的体积分别为101和97.7 Å3)。单斜相的弹性常数比立方相大约高4%。所呈现的结果是研究C8富勒烯石物理和机械性能的第一步,C8富勒烯石可能具有储氢和其他应用潜力。未来,将分析温度对立方烷性质的影响。