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首页> 外文期刊>Chemistry of Materials >Controlled Formation of Carboxylic Acid Groups at Polyphosphazene Surfaces: Oxidative and Hydrolytic Routes
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Controlled Formation of Carboxylic Acid Groups at Polyphosphazene Surfaces: Oxidative and Hydrolytic Routes

机译:聚磷腈表面上羧酸基团的受控形成:氧化和水解途径

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摘要

Two methods have been developed for the controlled formation of carboxylic acid units at the surfaces of aryloxyphosphazene high polymers. The first involves a permanganate-induced oxidation of p-methylphenoxy side groups, with the surface density of carboxylic acid units being controlled by the ratio of p-methylphenoxy to phenoxy groups along the polymer chains. The second approach involves a base-induced hydrolysis of carboxylate ester functions at the para-positions of surface aryloxy side groups. In this method the surface density of carboxyl units is controlled by the reaction conditions, especially by the temperature and the solvent for the base. The same ester functions were converted to alcohol moieties by surface reductions using lithium aluminum hydride in diethyl ether. The surface structures before and after these reactions were studied by a combination of contact angle measurements, X-ray photoelectron spectroscopy, scanning electron microscopy with X-ray microanalysis, and ATR-IR spectroscopy.
机译:已经开发出两种方法来控制在芳氧基磷腈高聚物表面上形成羧酸单元。第一种涉及高锰酸盐诱导的对甲基苯氧基侧基的氧化,其中羧酸单元的表面密度由沿聚合物链的对甲基苯氧基与苯氧基的比率控制。第二种方法涉及碱诱导的表面芳氧基侧基对位的羧酸酯官能团的水解。在该方法中,羧基单元的表面密度通过反应条件,特别是通过温度和碱的溶剂来控制。使用氢化铝锂在乙醚中通过表面还原将相同的酯官能团转化为醇部分。通过接触角测量,X射线光电子能谱,具有X射线微分析的扫描电子显微镜和ATR-IR光谱的组合研究了这些反应之前和之后的表面结构。

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