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Sublimation phenomena of Lennard-Jones fluids in slit nanopores

机译:Lennard-Jones流体在狭缝纳米孔中的升华现象

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Using molecular dynamics simulations, The authors studied the solid-vapor coexistence states of Lennard-Jones methane confined in slit-shaped graphite nanopores. Both the intrapore solid and extrapore vapor were simulated using a unit cell which they previously developed. Frozen critical condensates in the pores were cooled stepwise, and the equilibrium vapor pressure was determined at each temperature. The obtained solid-vapor coexistence curves were remarkably lower than that of the bulk phase. Their thermodynamic model successfully predicts the simulation results without the need to introduce any adjustable parameter, and thus proves its reliability. (c) 2007 American Institute of Physics.
机译:作者使用分子动力学模拟研究了狭缝形石墨纳米孔中Lennard-Jones甲烷的固-气共存状态。孔内固体和孔外蒸气均使用先前开发的晶胞进行模拟。逐步冷却孔中冻结的临界冷凝物,并在每个温度下确定平衡蒸气压。所获得的固-汽共存曲线明显低于本体相。他们的热力学模型无需引入任何可调参数就可以成功地预测仿真结果,从而证明了其可靠性。 (c)2007年美国物理研究所。

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