Ionomers as charge additives

A. Diaz, D. Fenzel-Alexander, D. C. Miller, D. Wollmann, A. Eisenberg
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引用次数: 4

Abstract

Contract electrification measurements were performed on polymeric particles containing toluenesulfonate salt. Two forms of the toluenesulfonate ion pair were studied, an ionomer, poly(styrene-co-N-methyl-4-vinylpyridinium toluenesulfonate) and a molecular salt, cetyltrimethylammonium toluenesulfonate. Both types of particles charge positive, and the ionomer produces the higher charge level. XPS analysis shows that the particles containing the ionomer have a surface salt composition that resembles the formulation composition, whereas the surface salt composition of the particles containing the molecular is significantly higher than in the formulation. The variation in the surface ion concentration is used to estimate a relative charging capacity of the salts. XPS analyses of the carriers that were used with both particles shows an S 2p signal appropriate for the toluenesulfonate anion. A mechanism for charging involving the transfer of the toluenesulfonate anion from polymer particles to the carrier is proposed.
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作为电荷添加剂的离聚体
对含有甲苯磺酸盐的聚合物颗粒进行了接触带电测量。研究了两种形式的甲苯磺酸离子对,一种离聚物,聚(苯乙烯-co-N-甲基-4-乙烯基吡啶鎓甲苯磺酸酯)和一种分子盐,十六烷基三甲基甲苯磺酸铵。这两种类型的粒子都带正电荷,离聚物产生更高的电荷水平。XPS分析表明,含有离聚物的颗粒具有类似于制剂组成的表面盐组成,而含有分子的颗粒的表面盐成分显著高于制剂中的表面盐组分。表面离子浓度的变化用于估计盐的相对充电容量。与两种颗粒一起使用的载体的XPS分析显示了适用于甲苯磺酸根阴离子的S2p信号。提出了一种将甲苯磺酸根阴离子从聚合物颗粒转移到载体上的充电机制。
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