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Critical Role of Dynamic Flexibility in Ge‐Containing Zeolites: Impact on Diffusion

机译:动态柔性在含锗沸石中的关键作用:对扩散的影响

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摘要

Incorporation of germanium in zeolites is well known to confer static flexibility to their framework, by stabilizing the formation of small rings. In this work, we show that the flexibility associated to Ge atoms in zeolites goes beyond this static effect, manifesting also a clear dynamic nature, in the sense that it leads to enhanced molecular diffusion. Our study combines experimental and theoretical methods providing evidence for this effect, which has not been described previously, as well as a rationalization for it, based on atomistic grounds. We have used both pure‐silica and silico‐germanate ITQ‐29 (LTA topology) zeolites as a case study. Based on our simulations, we identify the flexibility associated to the pore breathing‐like behavior induced by the Ge atoms, as the key factor leading to the enhanced diffusion observed experimentally in Ge‐containing zeolites.
机译:众所周知,在沸石中掺入锗可通过稳定小环的形成而赋予其骨架以静态柔性。在这项工作中,我们表明与沸石中的Ge原子相关的柔性超出了这种静态作用,从某种意义上说,它还导致了分子扩散的增强,还表现出明显的动态性质。我们的研究结合了实验方法和理论方法,为这种效果提供了证据(以前没有进行过描述),并基于原子论基础对其进行了合理化。作为案例研究,我们同时使用了纯硅酸盐和硅锗酸盐ITQ-29(LTA拓扑)沸石。根据我们的模拟,我们确定了与Ge原子诱导的类似于孔隙呼吸的行为有关的柔韧性,这是导致在含Ge沸石中实验观察到的扩散增强的关键因素。

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