首页> 外文期刊>Zeitschrift fur Kristallographie: International Journal for Structural, Physical, and Chemical Aspects of Crystalline Materials >Non-hydrostatic compression of zeolite NaA in water medium: connection to anomalous conductivity
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Non-hydrostatic compression of zeolite NaA in water medium: connection to anomalous conductivity

机译:NaA沸石在水介质中的非静水压缩:与反常电导率的关系

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High-pressure synchrotron X-ray powder diffraction measurements of a synthetic zeolite NaA were carried out up to 2.5 GPa using pure water as pressure-transmitting (P) medium to provide non-hydrostatic (wet) conditions in a diamond anvil cell. The compressibility of wet zeolite NaA is similar to that measured at hydrostatic compression in water within the P-range 0-0.8 GPa, whereas between 1-2 GPa the zeolite becomes slightly more compressible and progressively amorphizes due to the non-hydrostatic conditions. Rietveld refinement at 0.37 GPa reveals a selective additional filling of the H2O sites in alpha- and beta-cage, leading to about 30% increase of the total water content. The over-hydrated state of the zeolite is partially preserved after the pressure release. The over-hydration of zeolite pores, combined with a partial disordering at the onset of amorphization, apparently provides necessary conditions, for the P-induced enhancement of water-cationic diffusion and the corresponding increase of ionic conductivity observed in zeolite NaA in non-hydrostatic water medium.
机译:使用纯水作为压力传递(P)介质,对合成沸石NaA进行高压同步加速器X射线粉末衍射测量,最高可达2.5 GPa,以提供金刚石砧座单元中的非静水(湿)条件。湿沸石NaA的可压缩性与在0-0.8 GPa范围内的水中静水压缩时测得的相似,而在1-2 GPa之间,由于非静水条件,沸石变得稍微更可压缩并逐渐非晶化。 Rietveld精炼机在0.37 GPa的压力下可以选择性地填充α-笼和β-笼中的H2O部位,从而使总含水量增加约30%。压力释放后,沸石的过度水合状态得以部分保留。沸石孔隙的过度水化,再加上非晶化开始时的部分紊乱,显然为P诱导的水阳离子扩散的增强以及在非静水状态下在NaA沸石中观察到的离子电导率的相应增加提供了必要条件。水介质。

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