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Rheological characterization of pH-responsive carboxymethyl starch/beta-cyclodextrin microgels

机译:pH响应羧甲基淀粉/β-环糊精微凝胶的流变学表征

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摘要

Carboxymethyl starch (CMS)/beta-cyclodextrin (beta-CD) microgels with pH and ionic strength sensitivities have been synthesized by chemical crosslinking. The characterization of microgels was investigated by thermogravimetric analysis, zeta potential measurements, swelling, and rheological analyses. Thermogravimetric analysis data showed that the initial degradation temperature of microgels was higher than that of CMS, but lower than that of beta-CD. The zeta potentials of microgels decreased with increasing weight ratio R beta-CD/CMS and ionic strength, but increased with increasing pH. The swelling degree of microgels showed an abrupt increase in the pH range 3-6 due to the ionization of carboxylic groups, and then remained almost constant. However, it decreased with increasing ionic strength. Viscosity results revealed that all samples exhibited non-Newtonian shear-thinning behavior. All microgels exhibited dominant elastic behavior over the entire frequency range with polymer concentrations of 7%. These results suggested that the properties of microgels could be controlled by pH and ionic strength.
机译:通过化学交联合成了具有pH和离子强度敏感性的羧甲基淀粉(CMS)/β-环糊精(β-CD)微凝胶。通过热重分析,ζ电势测量,溶胀和流变分析研究了微凝胶的表征。热重分析数据表明,微凝胶的初始降解温度高于CMS,但低于β-CD。微凝胶的ζ电势随重量比Rβ-CD/ CMS和离子强度的增加而降低,但随pH值的增加而升高。由于羧基的电离,微凝胶的溶胀度显示在pH范围3-6中突然增加,然后保持几乎恒定。但是,它随着离子强度的增加而降低。粘度结果表明,所有样品均表现出非牛顿剪切稀化行为。所有微凝胶在聚合物浓度为7%的整个频率范围内均表现出显着的弹性行为。这些结果表明,微凝胶的性质可以通过pH和离子强度来控制。

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