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Properties of Concentrated Aqueous Electrolyte Solution in a Vicinal Region of Coexisting Solid Surface

机译:共存固体表面邻近区域中浓缩水性电解液的性质

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Properties of concentrated ZnSO_4 aqueous solutions coexisting with metal oxide nanoparticles were observed. Raman spectroscopy indicated that ion pair forming tendencies was enhanced in the vicinity of silica nanoparticles which have hydrophilic groups. Zn~(2+) is supposed not to make sufficient hydration sphere and tend to make contact ion pair due to sharing water molecules with hydrophilic solid surface. Alumina nanoparticles exhibited strong effect on ~1H relaxation than silica nanoparticles. The salt concentration dependences of ~1H relaxation time and pH of aqueous solution suggested that the effects from solid phase on coexisting liquid phase were affected by liquid property in itself.
机译:观察到与金属氧化物纳米粒子共存的浓缩ZnSO_4水溶液的性质。拉曼光谱表明,在具有亲水基团的二氧化硅纳米粒子附近增强了离子对形成趋势。 Zn〜(2+)应该不制造足够的水合球,并且由于分离具有亲水性固体表面的水分子而倾向于进行接触离子对。氧化铝纳米粒子对比二氧化硅纳米颗粒的〜1H弛豫表现出强烈的效果。 〜1H弛豫时间和水溶液的pH值的盐浓度依赖性表明,来自固体相对共存液相的影响本身是受液体性质的影响。

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