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NMR study of microscopic mechanism of water molecules diffusion in natrolite

机译:Natrolite水分子扩散微观机理的NMR研究

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The mineral natrolite is a good object for studying the features of the molecular mobility of water molecules in spatially restricted structures by NMR techniques. The microscopic mechanisms of water molecule mobility in channels of monocrystal natural zeolite natrolite (Na16Al16Si24O80 center dot 16H(2)O) have been investigated by broad-line (CW) NMR method. The CW NMR method, which accurately reproduces the shape of a Pake doublets of water molecules, has made it possible to trace diffusion of individual water molecules between specific positions in the crystal lattice as a function of temperature, which is important in understanding diffusion mechanisms in narrow channels of natrolite, where a diameter of the channel is smaller than the diameter of the water molecule. It has been shown that at temperatures higher than 250 K the regular diffusion of water molecules along the Schottky defects located along channels parallel to the c-crystal axis is a main kind of water molecules mobility. At temperature higher than 350 K the diffusion of water molecules in transversal channels of natrolite was observed also. Using the structural data the possible pathways of water molecules diffusion in natrolite channels have been discussed. The relationship between diffusion of water molecules and the dynamics of the zeolite framework and sodium cations is discussed on the basis of the assumption non-Markovian characte of diffusion in natrolite.
机译:矿物Natrolite是通过NMR技术研究水分子在空间限制结构中的分子迁移率的特征的良好物体。通过宽线(CW)NMR法研究了单晶天然沸石Natrolite(Na16Al16Si24O80中央点16h(2)O)的通道中水分子迁移率的微观机制。精确地再现水分子的伴随水分子形状的CW NMR方法使得可以在晶格中的特定位置之间追踪各个水分子作为温度的函数,这在理解扩散机制方面是重要的Natrolite的窄通道,其中通道的直径小于水分子的直径。已经表明,在高于250k的温度下,沿着与C晶体轴平行的通道沿着肖特基缺陷的水分子的定期扩散是一种主要的水分子迁移率。在高于350k的温度下,也观察到在罗格兰岩横向通道中的水分子的扩散。使用结构数据,已经讨论了无罗石通道中的水分子扩散的可能途径。基于在Natrolite中的扩散的广告的假设非马其雅的特征,讨论了水分子扩散与沸石框架和钠阳离子之间的关系。

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