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首页> 外文期刊>Journal of Colloid and Interface Science >Interaction between pentaethylene glycol n-octyl ether and poly(acrylic acid): Effect of the polymer molecular weight
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Interaction between pentaethylene glycol n-octyl ether and poly(acrylic acid): Effect of the polymer molecular weight

机译:五乙二醇正辛醚与聚丙烯酸的相互作用:聚合物分子量的影响

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摘要

The effect of the polymer molecular weight on the interaction between pentaethylene glycol n-octyl ether (C8E5) and poly(acrylic acid) (PAA) has been investigated by a combined experimental strategy including tensiometry, potentiometry, calorimetry, fluorescence quenching and intradiffusion (pulsed gradient spin echo-NMR) measurements. PAA samples with an average molecular weight varying in a wide range ((M) over bar (w) = 2000, 100,000, 250,000, and 450,000) have been considered. The measurements have been performed at constant polymer concentration (0.1% w/w) with varying surfactant molality. In all the considered systems, at low surfactant concentration, adsorption of surfactant monomers onto the polymer chain has been detected. At a C8E5 molality (T-1) independent of the PAA (M) over bar (w), surfactant molecules start to aggregate, forming clusters to which the polymer co-participates. Above this concentration, the behavior of the system depends on (M) over bar (w). In fact, if polymer samples with high molecular weight ((M) over bar (w) >= 100,000) are employed, all the added surfactant aggregates onto the polymer leading to the polymer saturation and, subsequently, to free micelles formation. Both saturation and free micellization occur at surfactant concentrations which are independent of the polymer molecular weight. C8E5 aqueous mixtures containing PAA with low molecular weight ((M) over bar (w) = 2000) behaves differently, in that, above T-1, only a fraction (similar to 20%) of the added surfactant molecules interact with the polymer, forming aggregates to which more than one PAA chain participate. In this case, C8E5 free micellization occurs before polymer saturation. The experimental evidences have been interpreted in terms of the subtle balance between the various molecular interactions driving the surfactant-polymer aggregation. (C) 2007 Elsevier Inc. All rights reserved.
机译:聚合物的分子量对五乙二醇正辛基醚(C8E5)与聚丙烯酸(PAA)之间相互作用的影响已通过组合实验策略进行了研究,包括张力测定,电位测定,量热,荧光猝灭和内扩散(脉冲梯度自旋回波(NMR)测量。已考虑了平均分子量在宽范围内变化的PAA样品((M)超过bar(w)= 2000、100,000、250,000和450,000)。测量是在恒定的聚合物浓度(0.1%w / w)和表面活性剂摩尔浓度变化的条件下进行的。在所有考虑的系统中,在低表面活性剂浓度下,都已检测到表面活性剂单体在聚合物链上的吸附。在独立于PAA(M)的C8E5摩尔浓度(T-1)(bar)之上,表面活性剂分子开始聚集,形成聚合物共同参与的簇。高于此浓度,系统的行为取决于(M)超过bar(w)。实际上,如果使用具有高分子量((bar)((m)大于(w)≥100,000))的聚合物样品,则所有添加的表面活性剂均会聚集到聚合物上,导致聚合物饱和并随后形成游离的胶束。饱和和自由胶束化均在表面活性剂浓度下发生,该浓度与聚合物分子量无关。含有低分子量((M)超过bar(w)= 2000)的PAA的C8E5水性混合物的行为有所不同,因为在T-1以上,仅一部分(约20%)的表面活性剂分子与聚合物发生相互作用,形成多个PAA链参与的聚合。在这种情况下,C8E5游离胶束化发生在聚合物饱和之前。实验证据已经根据驱动表面活性剂-聚合物聚集的各种分子相互作用之间的微妙平衡进行了解释。 (C)2007 Elsevier Inc.保留所有权利。

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