首页> 外文期刊>European Polymer Journal >Influence of hydrophobe content and salt concentration on dilute solution behaviour of hydrophobically modified ionic polymers from diallylammonium salts/sulfur dioxide cyclocopolymerization: Light scattering and fluorescence spectroscopy
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Influence of hydrophobe content and salt concentration on dilute solution behaviour of hydrophobically modified ionic polymers from diallylammonium salts/sulfur dioxide cyclocopolymerization: Light scattering and fluorescence spectroscopy

机译:疏水物含量和盐浓度对二烯丙基铵盐/二氧化硫环共聚合疏水改性离子聚合物稀溶液行为的影响:光散射和荧光光谱

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Novel hydrophobically modified polyelectrolytes were synthesized using the cyclocopolymerization of sulfur dioxide, N,N-diallyl-N-carboethoxymethylammonium chloride and the hydrophobic monomer N,N-diallyl-N-octadecylammomurn chloride. Aggregation of these polymers in aqueous solutions was characterized in the dilute regime by static light scattering and fluorescence spectroscopy as a function of hydrophobe content and NaCl concentration. Copolymers were observed to associate at very low concentrations (0.005 wt%). The copolymer is capable of associating at this very low polymer concentration because of the extended length of the hydrophobic monomer (C-18) that can reach far enough from the backbone to avoid electrostatic repulsion. Aggregation of the polymers increased with increasing hydrophobe content. Upon addition of salt, the apparent molecular weight of polymer aggregates decreased as a result of neutralization of the charges. At high salt concentrations, the size of the polymer aggregates was observed to increase again as a result of increased polarity of the solvent that resulted in more hydrophobic association. (c) 2005 Elsevier Ltd. All rights reserved.
机译:使用二氧化硫,N,N-二烯丙基-N-羧乙氧基甲基铵氯化物和疏水性单体N,N-二烯丙基-N-十八烷基lammomurn氯化物的环聚反应合成了新型疏水改性的聚电解质。这些聚合物在水溶液中的聚集在稀薄状态下通过静态光散射和荧光光谱表征,作为疏水物含量和NaCl浓度的函数。观察到共聚物以非常低的浓度(0.005重量%)缔合。该共聚物能够以这种非常低的聚合物浓度缔合,因为疏水性单体(C-18)的延伸长度可以达到距离主链足够远的距离,从而可以避免静电排斥。聚合物的聚集随着疏水物含量的增加而增加。加入盐后,由于电荷的中和,聚合物聚集体的表观分子量降低。在高盐浓度下,由于溶剂极性的增加(导致更多的疏水缔合),观察到聚合物聚集体的大小再次增加。 (c)2005 Elsevier Ltd.保留所有权利。

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