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首页> 外文期刊>Journal of Macromolecular Science. Physics >Solution Behavior of Hydrophobic Cationic Hydroxyethyl Cellulose
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Solution Behavior of Hydrophobic Cationic Hydroxyethyl Cellulose

机译:疏水性阳离子羟乙基纤维素的溶液行为

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摘要

The hydrophobic cationic hydroxyethyl cellulose (HEC-g-DA) was prepared by grafting HEC with various alkyl ammonium chlorides (DA) in order to improve the thickening properties of cationic hydroxyethyl cellulose. The solution behavior of HEC-g-DA was studied, and showed that the apparent viscosity of HEC-g-DA increased with polymer concentration, and there existed a critical association concentration (Cp*). The alkyl chain length of DA had a great influence on Cp*, which decreased with increasing alkyl chain length; however, too long an alkyl chain of DA reduced the water solubility of the polymer, resulting in a slight increase of Cp*. The effect of temperature and electrolyte concentration on the thickening properties of HEC-g-DA was investigated; the value of viscous flow activation energy (E_a) was minimum for the sample of HEC-g-DA16 (glycidyl-N-hexadecyl-N,N-dimethyl-ammonium chloride), indicating the weakest sensitivity of the viscosity to temperature. In the whole range of shear rate investigated, the solutions of HEC-g-DA displayed the shear thinning behavior of a pseudoplastic fluid. The values of viscous index (n) from the Ostwald model simulation decreased with polymer concentration, indicating an improvement of the shear thinning property of the solution, whereas the increase of the consistency coefficient (k) indicated the enhancement of the thickening behavior of the polymer. With increasing polymer concentration, the molecular association of HEC-g-DA16 became strong, and high-shear stress was required to remove the association, while the difference between G' and G" became small, indicating that the elasticity of the system was enhanced at high polymer concentration. The amphiphilic structure of the HEC-g-DA16 molecules contributed to the low surface tension of the polymer.
机译:通过将HEC与各种烷基氯化铵(DA)接枝来制备疏水性阳离子羟乙基纤维素(HEC-g-DA),以改善阳离子羟乙基纤维素的增稠性能。研究了HEC-g-DA的溶液行为,结果表明HEC-g-DA的表观粘度随聚合物浓度的增加而增加,并且存在临界缔合浓度(Cp *)。 DA的烷基链长对Cp *有很大的影响,随着烷基链长的增加而降低。但是,DA的烷基链过长会降低聚合物的水溶性,导致Cp *略有增加。研究了温度和电解质浓度对HEC-g-DA增稠性能的影响。对于HEC-g-DA16(缩水甘油基-N-十六烷基-N,N-二甲基氯化铵)样品,粘性流动活化能(E_a)的值最小,表明粘度对温度的敏感性最弱。在研究的整个剪切速率范围内,HEC-g-DA溶液显示出假塑性流体的剪切稀化行为。 Ostwald模型模拟的粘滞指数(n)值随聚合物浓度的增加而降低,表明溶液的剪切稀化性能有所改善,而稠度系数(k)的增加表明聚合物的增稠行为有所增强。随着聚合物浓度的增加,HEC-g-DA16的分子缔合变强,需要高剪切应力才能消除缔合,而G'和G“之间的差异变小,表明系统的弹性得到增强在高聚合物浓度下,HEC-g-DA16分子的两亲结构有助于降低聚合物的表面张力。

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