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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Effect of surface-perturbed intermolecular interaction on adsorption of simple gases on a graphitized carbon surface
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Effect of surface-perturbed intermolecular interaction on adsorption of simple gases on a graphitized carbon surface

机译:表面扰动的分子间相互作用对石墨化碳表面上简单气体吸附的影响

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摘要

In this paper, we investigate the effect of the solid surface on the fluid-fluid intermolecular potential energy. This modified fluid-fluid interaction energy due to the inducement of a solid surface is used in the grand canonical Monte Carlo (GCMC) simulation of various noble gases, nitrogen, and methane on graphitized thermal carbon black. This effect is such that the effective interaction potential energy between two particles close to surface is less than the potential energy if the solid substrate is not present. With this modification the GCMC simulation results agree extremely well with the experimental data over a wide range of pressures while the simulation results with the unmodified potential energy give rise to a shoulder near the neighborhood of monolayer coverage and the significant overprediction of the second and higher layer coverages. In particular the unmodified GCMC results exhibit very sharp change in those higher layers while the experimental data have a much gradual change in the uptake. We will illustrate this theory with adsorption data of argon, xenon, neon, nitrogen, and methane on graphitized thermal carbon black.
机译:在本文中,我们研究了固体表面对流体-分子间势能的影响。由于固体表面的诱导而产生的这种改进的流体-流体相互作用能被用于石墨化热炭黑上各种稀有气体,氮气和甲烷的大经典蒙特卡罗(GCMC)模拟中。这种效果使得靠近表面的两个粒子之间的有效相互作用势能小于不存在固体基质时的势能。通过这种修改,GCMC模拟结果在很大的压力范围内与实验数据非常吻合,而具有未修改的势能的模拟结果在单层覆盖附近产生了肩峰,并且对第二层和更高层有明显的过高预测报道。特别地,未修饰的GCMC结果在那些较高的层中显示出非常明显的变化,而实验数据在吸收方面具有非常缓慢的变化。我们将用石墨化热炭黑上的氩气,氙气,氖气,氮气和甲烷的吸附数据说明这一理论。

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