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Melting mechanism of monolayers adsorbed in cylindrical pores: An influence of the pore wall roughness

机译:圆柱孔中吸附的单分子层的熔化机理:孔壁粗糙度的影响

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We have analyzed the mechanism of melting of layers adsorbed in cylindrical pores of porous materials. The goal was to understand the melting mechanism of simple fluids adsorbed in pores with heterogeneous wall surface. The studied system was a monolayer of methane molecules adsorbed in MCM-41 pore of diameter d = 4 nm. Both experimental (neutron scattering) and simulation (Monte Carlo) results proved extremely strong influence of the wall roughness on the melting mechanism. The most striking difference between melting on smooth and rough surfaces was in the temperatures of the transition. The transformation between solid-like and liquid-like monolayer phases adsorbed on a rough surface was observed in a very large temperature range and the solid like properties were observed even above the bulk methane melting temperature.
机译:我们已经分析了多孔材料圆柱孔中吸附的层的熔化机理。目的是了解吸附在具有异质壁表面的孔中的简单流体的熔化机理。所研究的系统是甲烷分子吸附在直径d = 4 nm的MCM-41孔中的单分子层。实验(中子散射)和模拟(蒙特卡洛)结果都证明壁粗糙度对熔化机理有极强的影响。在光滑和粗糙表面上熔化的最大区别在于转变温度。在非常大的温度范围内观察到了吸附在粗糙表面上的固态和液态单层相之间的转变,甚至在高于甲烷的熔融温度时也观察到了固态特性。

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