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Molecular path control in zeolite membranes

机译:沸石膜的分子路径控制

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摘要

We report molecular simulations of diffusion in confinement showing a phenomenon that we denote as molecular path control (MPC) depending on loading, molecules follow a preferred pathway. MPC raises the important question to which extent the loading may affect the molecular trajectories in nanoporous materials.Through MIPC one is able to manually adjust the ratio of the diffusivities through different types of pores, and as an application one can direct the flow of diffusing particles in membranes forward or sideward by simply adjusting the pressure, without the need for mechanical parts like valves. We show that the key ingredient of MPC is the anisotropic nature of the nanoporous material that results in a complex interplay between different diffusion paths as a function of loading. These paths may be controlled by changing the loading, either through a change in pressure or temperature.
机译:我们报道了在限制条件下扩散的分子模拟,显示了一种现象,我们将其表示为取决于载荷的分子路径控制(MPC),分子遵循一条优选途径。 MPC提出了一个重要的问题,即负载可能在多大程度上影响纳米多孔材料的分子轨迹。通过MIPC,人们可以手动调节通过不同类型的孔的扩散率,而作为一种应用,则可以指导扩散颗粒的流动通过简单地调节压力就可以向前或向侧移动膜,而无需诸如阀门的机械零件。我们表明,MPC的关键成分是纳米多孔材料的各向异性,这会导致不同扩散路径之间的复杂相互作用(作为载荷的函数)。这些路径可以通过改变压力或温度来改变负载来控制。

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