【24h】

Measures to determine the hydrophobicity of colloidal polymers

机译:测定胶体聚合物疏水性的措施

获取原文
获取原文并翻译 | 示例

摘要

The role of latex dispersions as well as water-soluble polymers in industrial and pharmaceutical applications (i.e. analytical and drug delivery systems) is growing fast. An important attribute of polymer particles is the high adsorption capacity for organic moieties (e.g. of molecules of biological origin). It is important that the biologically active molecules remain fully hydrated during the adsorption by the colloidal system; therefore, it is essential to have a measure for the hydration of both adsorbent particles and adsorptive molecules and to correlate its value with other properties of the polymeric material. We have estimated the hydrophobic/hydrophilic balance with adsorption isotherms of polymethine dyes (surface probes). The adsorption of the anionic dyes is 10 times stronger on positively charged polystyrene particles com- pared to the adsorption of the corresponding cationic dyes on negatively charged particles. We found a red-shift in the absorption maximum of the anionic dyes after adsorption onto the positively charged particles. A blueshift was observed for cationic dyes bound to negatively charged particles. We deduce from our measurements that the nature of the surface charges present at the particle-liquid interphase alters the surface characteristics of the particles. We suppose that cationic charged polymer particles are more hydro-phobic than particles from the same matrix with negative surface charges. In a qualitative model, we illustrate the governing role of hydration forces on particle aggregation.
机译:乳胶分散体以及水溶性聚合物在工业和制药应用(即分析和药物输送系统)中的作用正在迅速增长。聚合物颗粒的重要属性是对有机部分(例如,生物来源分子)的高吸附能力。重要的是,生物活性分子在通过胶体系统的吸附过程中保持完全水合;因此,必须有一种措施来测量吸附剂颗粒和吸附剂分子的水合作用,并将其价值与聚合物材料的其他性能联系起来。我们已经估计了聚次甲基染料(表面探针)的吸附等温线的疏水/亲水平衡。与带正电的聚苯乙烯颗粒相比,带负电的颗粒对阴离子染料的吸附要强十倍。我们发现吸附到带正电的颗粒后,阴离子染料的最大吸收发生红移。对于与带负电粒子结合的阳离子染料,观察到了蓝移。由我们的测量推论,存在于颗粒-液体界面处的表面电荷的性质改变了颗粒的表面特性。我们假设阳离子带电的聚合物颗粒比来自具有负表面电荷的相同基质的颗粒更疏水。在定性模型中,我们说明了水合力对颗粒聚集的支配作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号