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ONE-DIMENSIONAL SURFACE DIFFUSION - DENSITY DEPENDENCE IN A SMOOTH POTENTIAL

机译:一维表面扩散-光滑势的密度依赖性

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A kinetic treatment of the transport of mobile molecules in nanometer channels is presented, that explores ideas of the Enskog theory of dense gases combined with molecular relaxation to the substrate. Transport diffusivity is shown to increase strongly with density, as an effect of effective transfer of mass in the nonlocal intermolecular collisions. The effect is partially compensated by the additional collisional relaxation, that would be absent in the truly one-dimensional system of hard rods, but is shown to occur in the realistic cases of quasi-one-dimensional channels and/or ''soft'' particles. A resulting behavior of diffusivity as a function of density close to 1/(1-theta), where theta is the degree of occupancy, is expected. This suggests an explanation for the puzzling universal behavior observed earlier in zeolites. (C) 1997 American Institute of Physics. [References: 24]
机译:提出了一种对纳米通道中移动分子传输进行动力学处理的方法,该方法探索了浓密气体的Enskog理论的思想,并结合了分子弛豫到基质的方法。由于非局部分子间碰撞中质量的有效传递,传输扩散率随密度显着增加。这种影响可以通过额外的碰撞弛豫得到部分补偿,这在真正的一维硬杆系统中是不存在的,但是在准一维通道和/或“软”通道的实际情况下会出现这种情况。粒子。预期扩散率随密度的函数变化接近1 /(1-theta),其中theta是占用度。这为早先在沸石中观察到的令人费解的普遍行为提供了解释。 (C)1997美国物理研究所。 [参考:24]

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