首页> 外文期刊>Journal of Molecular Liquids >Protonated dye-surfactant ion pair formation between neutral red and anionic surfactants in aqueous submicellar solutions
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Protonated dye-surfactant ion pair formation between neutral red and anionic surfactants in aqueous submicellar solutions

机译:亚胶束水溶液中性红和阴离子表面活性剂之间形成质子化的染料-表面活性剂离子对

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Spectral and surface tension behavior of aqueous neutral red in the presence of sodium dodecyl sulfate (SDS), sodium dodecyl benzene sulfonate(SDBS) and sodium dodecyl sulfonate(SDSN) have been studied to understand the nature of the interactions in their submicellar concentration ranges. The variations in spectra and surface tension with variation in the concentrations of the surfactants suggest the formation of a 1:1 close-packed dye-surfactant ion pair. HNR+center dot S- between the acid form, HNR+ of the dye and the surfactant anion at very low concentrations of the surfactant below critical micelle concentration (cmc) of the pure surfactant. The dye-surfactant ion pair behaves like a nonionic surfactant having higher efficiency and lower cmc than that of the corresponding pure anionic surfactant. The ion pairs are adsorbed on the air/water interface at very low concentrations of the surfactant. As the concentration of the surfactant increases and the ion pairs form micelles of their own, the dye in the ion pair is protonated to form H2NR2+center dot S-. As the cmc of the pure surfactant is approached, the protonation equilibrium gradually reverses and pure surfactant ions gradually replace the ion pairs at the interface. Finally,a homogeneous monolayer of pure surfactant anions exists at the air/water interface and the dye remain solubilized in pure micelles above the cmc of the pure surfactant. The equilibrium constants, K, for the close-packed protonated dye-surfactant ion pair (PDSIP) formation have been determined at varying pH. The submicellar interaction has been found to be stronger with SDS than SDBS. The plots of logarithm of K-C vs. pH have been found to be quite linear which consolidates the assumption of formation of the species, H2NR2+center dot S-. The interaction is driven by enthalpy as well as entropy.
机译:研究了十二烷基硫酸钠(SDS),十二烷基苯磺酸钠(SDBS)和十二烷基磺酸钠(SDSN)存在下的水性中性红的光谱和表面张力行为,以了解其亚胶束浓度范围内相互作用的性质。光谱和表面张力随表面活性剂浓度的变化而变化,表明形成了1:1紧密堆积的染料-表面活性剂离子对。在非常低的表面活性剂浓度(低于纯表面活性剂的临界胶束浓度(cmc))下,酸形式,染料的HNR +和表面活性剂阴离子之间的HNR +中心点S-。染料表面活性剂离子对的行为类似于非离子表面活性剂,其效率和cmc比相应的纯阴离子表面活性剂低。离子对以非常低的表面活性剂浓度吸附在空气/水界面上。随着表面活性剂浓度的增加和离子对形成其自身的胶束,离子对中的染料被质子化以形成H2NR2 +中心点S-。随着接近纯表面活性剂的cmc,质子化平衡逐渐反转,纯表面活性剂离子逐渐取代界面上的离子对。最后,纯净表面活性剂阴离子的均匀单层存在于空气/水界面处,并且染料保持溶解在纯净表面活性剂cmc上方的纯胶束中。已确定了在不同pH值下紧密堆积的质子化染料-表面活性剂离子对(PDSIP)形成的平衡常数K。已经发现,SDS的亚胶束相互作用比SDBS的更强。已经发现,K-C对pH的对数关系图非常线性,这巩固了H2NR2 +中心点S-物种形成的假设。相互作用是由焓和熵驱动的。

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