首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Fragile structured layers on surfaces detected by dynamic atomic force microscopy in aqueous electrolyte solutions
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Fragile structured layers on surfaces detected by dynamic atomic force microscopy in aqueous electrolyte solutions

机译:通过动态原子力显微镜在电解质水溶液中检测到的表面上易碎的结构层

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摘要

In the prdsent study,the detailed characteristics of the layers of water molecules,ions and hydrated ions adsorbed on surfaces in NaCl solutions were investigated by introducing the dynamic method in the use of atomic force microscopy (AFM).We found the following.(1)There exist two kinds of structured layers on solid surfaces in electrolyte solutions - one is a thin,but firm primary layer in which water molecules,cations and hydrated cations are adsorbed directly on the solid surface,and the other is a thick,but fragile secondary layer outside the primary layer.(2)The thickness of the primary layer varies from 0.35 to 1.0 nm with the concentration of NaCl solution.(3)The secondary structure is detectable by introducing the dynamic method in the use of AFM,and the maximum gap at which the fragile structure starts to interact between surfaces was found to be around 4.0 nm at the maximum sensitivity of the present study.
机译:在目前的研究中,通过引入原子力显微镜(AFM)的动态方法,研究了NaCl溶液表面吸附的水分子,离子和水合离子层的详细特征。我们发现以下内容。(1电解质溶液在固体表面上存在两种结构层-一种是薄而牢固的主层,其中水分子,阳离子和水合阳离子直接吸附在固体表面上,另一种是厚而易碎的初级层外部的次级层。(2)初级层的厚度随NaCl溶液的浓度在0.35到1.0 nm之间变化。(3)通过使用AFM引入动态方法可以检测二级结构,并且在本研究的最大灵敏度下,发现脆弱结构开始在表面之间相互作用的最大间隙约为4.0 nm。

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