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Equation of state of a model methane clathrate cage

机译:甲烷笼形模型笼的状态方程

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摘要

We investigate the behavior of a model methane clathrate cage under high hydrostatic pressures. The methane clathrate cage consists of 20 water molecules forming 12 pentagonal faces, with a methane molecule positioned at the cage center. The clathrate compound is located inside a fullerene-type arrangement of 180 He atoms to simulate an isotropic pressure. Different pressures are simulated by decreasing the radius of the He array. The minimal energy of the total system for each configuration is calculated by using density functional theory. The variation of the energy with the volume of the imprisoned clathrate cage leads to the proposal of a (cold) equation of state in the pressure range [0,60] GPa. The elastic parameters of the state equation are found in agreement with equivalent quantities measured on clathrates in their sI conformation. Special attention is given to the distribution of the confined atoms and the eventual symmetry lost from the clathrate cage with the pressure, as the clathrate cage constitutes a basic structural unit of the crystal. Finally, the strengths and limitations of the model are discussed.
机译:我们调查在高静水压力下模型甲烷笼形笼的行为。甲烷笼形笼由20个水分子组成,形成12个五边形面,甲烷分子位于笼中心。笼形化合物位于180 He原子的富勒烯型结构内部,以模拟各向同性压力。通过减小He阵列的半径来模拟不同的压力。使用密度泛函理论计算每种配置的整个系统的最小能量。能量随被囚禁笼形笼的体积的变化,导致提出了在[0,60] GPa压力范围内的(冷)状态方程。发现状态方程的弹性参数与以其sI构型的包合物测量的等效量一致。由于笼形笼构成了晶体的基本结构单元,因此特别注意了受限原子的分布以及笼形笼在压力下最终失去的对称性。最后,讨论了该模型的优点和局限性。

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