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Nanofilms of adsorbed water in clay: Mechanism of formation and properties

机译:粘土中吸附水的纳米膜:形成机理和性能

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摘要

The process of adsorption of water molecules by silicate surfaces of clay minerals is considered. The process leads to the formation of nano-thickness films of adsorbed water. An epitaxial mechanism of nanofilm formation is considered, consisting in the growth of structured hydrate layers under the effect of oxygen and hydroxyl surfaces of clay minerals. The difference between the sizes of hexagonal cells of the solid surface and the forming water film deforms hydrogen bonds and produces inner stress in both the film structure and the mineral lattice. The latter is reflected in the changing size of montmorillonite cell along the b-axis. The thickness of the newly formed adsorption water layer is shown to be controlled by the degree of hydrogen bond deformation, the stress developed inside the nanofilm, the cell size, and the rigidity (strength) of the mineral structure. The deformation of hydrogen bonds and water nanofilm structure determines its specific properties, i. e., wedging pressure, high viscosity, low temperatures of water freezing, dielectric conductivity, etc.
机译:考虑了粘土矿物的硅酸盐表面吸附水分子的过程。该过程导致形成吸附水的纳米厚度薄膜。考虑了形成纳米膜的外延机理,其包括在粘土矿物的氧和羟基表面的作用下结构化水合物层的生长。固体表面和形成的水膜的六角形孔的尺寸之间的差异使氢键变形并在膜结构和矿物晶格中产生内应力。后者反映在蒙脱石晶胞沿b轴变化的大小上。新形成的吸附水层的厚度显示为受氢键变形程度,纳米膜内部产生的应力,晶胞尺寸和矿物结构的刚度(强度)控制。氢键的变形和水纳米膜的结构决定了它的特殊性能,即例如楔压,高粘度,低温水冻结,介电导率等

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