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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >A rheological investigation of sol-gel transition of hydroxypropyl cellulose with nonionic surfactant sorbitan monopalmitate: Modulation of gel strength by UV irradiation
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A rheological investigation of sol-gel transition of hydroxypropyl cellulose with nonionic surfactant sorbitan monopalmitate: Modulation of gel strength by UV irradiation

机译:非离子型表面活性失水山梨糖醇单棕榈酸酯对羟丙基纤维素的溶胶-凝胶转变的流变学研究:紫外线辐射对凝胶强度的调节

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The interaction of hydrophobically modified biocompatible polymer hydroxypropyl cellulose (HPC) with nonionic surfactant sorbitan monopalmitate (Span 40) in aqueous solutions have been studied using rheology. The associated physicochemical properties of the HPC+ Span 40 mixed system such as cac, psp and cmc were studied as a function of Span 40 concentration. Steady shear rheological experiments indicate that the HPC as well as HPC+ Span 40 systems possesses two distinct regions in the rheogram Newtonian followed by Pseudoplastic behavior, and behave as plastic systems with the value of m parameter in the empirical Cross model equation eta(0) - eta(alpha)/eta - eta(alpha) 1/1 C(gamma)(m) varying between 0.725-0.675 and 2.24-1.58 in the first and second shear thinning regions. Dynamic rheological results suggest that the microstructural changes that occur during thermo reversible gelation of aqueous solutions of HPC and HPC+ Span 40 systems follow a two step mechanism i.e., gelation followed by precipitation. The thermal stability of the HPC hydrogel decreases as the concentration of Span 40 increases. Moreover, increase in the UV radiation dose on 10% HPC increases its gel strength probably due to the formation of active radicals in the polymer which on further reaction results in formation of highly cross linked gel of high viscoelasticity. However, this phenomena was not observed in 10% HPC solution after addition of Span 40. (C) 2015 Elsevier B.V. All rights reserved.
机译:使用流变学研究了疏水改性的生物相容性聚合物羟丙基纤维素(HPC)与非离子表面活性剂脱水山梨糖醇单棕榈酸酯(Span 40)的相互作用。研究了HPC + Span 40混合系统(如cac,psp和cmc)的相关理化性质与Span 40浓度的关系。稳定的剪切流变实验表明,HPC以及HPC + Span 40系统在牛顿流变图中具有两个不同的区域,其后为拟塑性行为,并且在经验交叉模型方程eta(0)中表现为m参数值的塑性系统-在第一和第二剪切稀化区域中,ηα/η-ηα1/ 1Cγ(m)在0.725-0.675和2.24-1.58之间变化。动态流变学结果表明,在HPC和HPC + Span 40系统水溶液的热可逆凝胶化过程中发生的微观结构变化遵循两步机理,即凝胶化和沉淀。随着Span 40浓度的增加,HPC水凝胶的热稳定性降低。此外,在10%HPC上增加UV辐射剂量可能会增加其凝胶强度,这可能是由于在聚合物中形成了活性基团,该基团在进一步反应后形成了具有高粘弹性的高度交联的凝胶。但是,在添加Span 40之后,在10%HPC溶液中未观察到此现象。(C)2015 Elsevier B.V.保留所有权利。

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