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首页> 外文期刊>Colloid and polymer science >Interaction between sodium dodecyl sulfate(SDS)and polyvinylpyrrolidone(PVP)investigated with forward and reverse component addition protocols employing tensiometric,conductometric,microcalorimetric,electrokinetic,and DLS techniques
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Interaction between sodium dodecyl sulfate(SDS)and polyvinylpyrrolidone(PVP)investigated with forward and reverse component addition protocols employing tensiometric,conductometric,microcalorimetric,electrokinetic,and DLS techniques

机译:十二烷基硫酸钠(SDS)与聚乙烯吡咯烷酮(PVP)之间的相互作用采用张力,电导,微量,电动力学和DLS技术研究了正向和反向组分添加方案

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The interaction between polyvinylpyrrolidone(PVP)and sodium dodecyl sulfate(SDS)after the procedure of addition of the surfactant to polymer and the reverse procedure of addition of polymer to SDS micelles has been studied by tensiometric,conductometric,and microcalorimetric methods.The results have been analyzed and correlated with reference to SDS interfacial adsorption,association,and binding to PVP.Two aggregation states of SDS in presence of PVP have been found.The enthalpies of formation of SDS aggregates/micelles and their binding to the polymer have been evaluated.The interaction of PVP with SDS at concentrations below its critical mi-cellar concentration(CMC)and above have evidenced distinctions.The forward addition protocol(FAP,SDS addition to PVP)and reverse addition protocol(RAP,PVP addition to SDS)have shown similarities and differences.Electrokinetic measurements have evidenced the interacted(SDS-PVP)colloidal products to possess negative zeta potential in the range of-39 to-65 mV.The hydrodynamic diameters of the PVP-SDS dispersion obtained from DLS measurements have ranged between 60 and 160 nm.Both zeta potential and hydrodynamic diameter have depended on [SDS] showing a maximum for the former at twice the critical micellar concentration of SDS.
机译:通过拉力法,电导法和微量量热法研究了聚乙烯吡咯烷酮(PVP)和十二烷基硫酸钠(SDS)在向聚合物中添加表面活性剂过程和向SDS微团中添加聚合物的相反过程之间的相互作用。结合SDS的界面吸附,缔合和与PVP的结合进行了分析和关联。发现了在PVP存在下SDS的两种聚集状态。评估了SDS聚集体/胶束的形成焓以及它们与聚合物的结合。在低于临界微球浓度(CMC)及以上的浓度下,PVP与SDS的相互作用具有明显的区别。已经显示了正向添加协议(FAP,SDS添加到PVP)和反向添加协议(RAP,PVP添加到SDS)电动势测量已证明相互作用的(SDS-PVP)胶体产物在-39范围内具有负Zeta电位至-65 mV。通过DLS测量获得的PVP-SDS分散体的流体力学直径范围为60至160nm。ζ电势和流体力学直径均取决于[SDS],在临界胶束浓度的两倍时,前者的最大值SDS。

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