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Studies of the influence of acetate groups from polyvinyl alcohol on adsorption and electrochemical properties of the TiO2-polymer solution interface

机译:聚乙烯醇中乙酸酯基对TiO2-聚合物溶液界面吸附和电化学性能影响的研究

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摘要

An influence of polyvinyl alcohol molecular weight and acetate groups, present in the macromolecule, on adsorption and electrochemical properties of the TiO2-polymer solution interface was studied. Calculated thickness of adsorption layers of PVA, on the surface of the oxide, allowed assume that acetate groups may have meaningful influence on the polymer chain conformation at the interface. Structure of macromolecules at titania-polymer solution interface was compared with that of bulk of solution. Obtained data allow determine the changes of the size and shape of polymer coils in the system. The results of experiments let us conclude main factors, responsible for observed zeta potential and surface charge changes of TiO2. It was proved that change of the ion structure of Stern layer, depends on molecular weight and number of acetate groups (degree of hydrolysis) of PVA macromolecule. Possible mechanism of zeta potential changes was proposed as a function of pH of the solution and molecular weight of the polymer. [References: 24]
机译:研究了大分子中存在的聚乙烯醇分子量和乙酸酯基对TiO2聚合物溶液界面吸附和电化学性能的影响。计算得出的氧化物表面上PVA吸附层的厚度允许假设乙酸酯基团可能对界面处的聚合物链构象产生有意义的影响。将二氧化钛-聚合物溶液界面处的大分子结构与大部分溶液的结构进行了比较。所获得的数据可以确定系统中聚合物线圈尺寸和形状的变化。实验的结果让我们总结了主要因素,这些因素是导致观测到的ζ电位和TiO2表面电荷变化的原因。证明了斯特恩层的离子结构的变化取决于分子量和PVA大分子的乙酸酯基团的数目(水解度)。提出了ζ电势变化的可能机理与溶液pH值和聚合物分子量的关系。 [参考:24]

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