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首页> 外文期刊>International Journal of Pharmaceutics >Poly(acrylic acid) microgels (carbopol 934)/surfactant interactions in aqueous media. Part I: nonionic surfactants.
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Poly(acrylic acid) microgels (carbopol 934)/surfactant interactions in aqueous media. Part I: nonionic surfactants.

机译:水性介质中的聚(丙烯酸)微凝胶(carbopol 934)/表面活性剂相互作用。第一部分:非离子表面活性剂。

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The interaction between Tween 80 and Pluronic F-127 with carbopol in water was studied as a function of surfactant concentration. 0.25% carbopol microgels dispersions showed a continuous decrease in transmittance, viscosity and conductivity when surfactant concentration ranged from 0.01-0.02% to 0.50% Tween 80 or from 0.03-0.06% to 0.30% Pluronic F-127. These limit values can be considered as the critical association concentration and the saturation binding concentration, respectively. In this concentration range, a strong rise in pH (from 3.18 to 3.50) suggested that surfactant-polymer binding occurred mainly through a stoichiometric hydrogen-bonding interaction between the oxyethylene and carboxylic groups. In the presence of carbopol, the concentration of Tween 80 at the air/water interface decreases as the surfactant is adsorbed onto the polymer and drawn into the bulk solution. In contrast, the interaction with the polymer seems to change the conformation of the expanded chains of Pluronic F-127, making it easier for more molecules of surfactant to be at the interface and increasing the thickness of the interfacial surfactant layer. Fluorescence probes indicated that the carbopol network presents a more apolar medium than pure water, and the differences in the hydrophile-lipophile balance (HLB) of each surfactant were responsible for the lower I(I)/I(III) values obtained with Tween 80/carbopol systems. Microcalorimetry titration data made it possible to conclude that Tween 80/carbopol interaction, at 298K, is an enthalpy-driven process due to stabilization of Tween 80 units inside the polymer network. In contrast, Pluronic F-127/carbopol association (endothermic process) occurs owing to a gain in entropy when polymer-surfactant interaction allows the restoration of free water hydrogen-bonding structure, resembling the micellization process.
机译:研究了吐温80和Pluronic F-127与卡波姆在水中的相互作用与表面活性剂浓度的关系。当表面活性剂浓度为0.01-0.02%至0.50%Tween 80或0.03-0.06%至0.30%Pluronic F-127时,0.25%的Carbopol微凝胶分散体显示出透射率,粘度和导电率的连续降低。这些极限值可以分别视为临界缔合浓度和饱和结合浓度。在此浓度范围内,pH值强烈上升(从3.18至3.50)表明表面活性剂与聚合物的结合主要是通过氧乙烯与羧基之间的化学计量氢键相互作用而发生的。在存在卡波姆的情况下,随着表面活性剂被吸附到聚合物上并被吸入本体溶液中,吐温80在空气/水界面处的浓度降低。相反,与聚合物的相互作用似乎改变了Pluronic F-127膨胀链的构象,使更多的表面活性剂分子更容易进入界面并增加了界面活性剂层的厚度。荧光探针表明,与纯净水相比,卡波姆网络所呈现的非极性介质更多,每种表面活性剂的亲水亲脂平衡(HLB)的差异是由Tween 80获得的较低I(I)/ I(III)值的原因。 / carbopol系统。微量量热法滴定数据可以得出结论,由于聚合物网络内部的Tween 80单元稳定,在298K时Tween 80 / carbopol相互作用是焓驱动的过程。相反,当聚合物-表面活性剂相互作用允许恢复游离水氢键结构时,由于熵增加,发生了Pluronic F-127 /咔唑缔合(吸热过程),类似于胶束化过程。

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