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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Analysis of Mixed Micellar Behavior of Cationic Gemini Alkanediyl-α,ω-bis(dimethylcetylammonium bromide) Series with Ionic and Nonionic Hydrotropes in Aqueous Medium at Different Temperatures
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Analysis of Mixed Micellar Behavior of Cationic Gemini Alkanediyl-α,ω-bis(dimethylcetylammonium bromide) Series with Ionic and Nonionic Hydrotropes in Aqueous Medium at Different Temperatures

机译:阳离子和双离子水溶助长剂在水中不同温度下阳离子双子烷基链烷烃基-α,ω-双(二甲基乙酰胺基溴化铵)系列的混合胶束行为分析

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The interaction between cationic symmetrical gemini alkanediyl-α,ω-bis-(dimethylcetylammonium bromide) series (16-s-16, s = 5, 6, abbreviated as G5 and G6) with hydrotropes (cationic: aniline hydrochloride, para-toluidine hydrochloride, and ortho-toluidine hydrochloride; nonionic: phenol, resorcinol, and pyrogallol) in aqueous medium has been investigated at four different temperatures ranging from 298.15 to 313.15 K. Different physico-chemical parameters such as critical micelle concentration (cmc), interaction parameter (β~m, an energetic parameter that represents the excess Gibbs free energy of mixing), activity coefficients (f_i), mole fraction of hydrotrope in mixed micelles at ideal mixing conditions (X1~(ideal)), excess free energy of mixing (△_(mix)G°), standard enthalpy (△_(mic)H°), entropy (△_(mic)S°), and Gibbs free energy (△_(mic)G°) of micellization were evaluated and then intracompated. For further understanding, similar studies were carried out with their conventional counterpart cetyltrimethyl ammonium bromide (CTAB) and then compared. The bulk behaviors were explored using different theoretical models of Clint, Rubihgh, and Motomura for justification and comparison of results of different binary combinations of hydrotropes with the gemini series and CTAB. Synergistic interaction was observed in all binary combinations at all temperatures in the micelles which decreases slightly with increasing temperature. This study will give insight into the selection of surfactants in different applications as their properties get modified by interaction with hydrotropes, thus influencing their solution behavior which, in turn, modifying the phase-forming behavior, microemulsion, liquid crystal forming systems, clouding phenomenon, cleaning, and laundry processes besides solubilization. The ability of hydrotropes to dramatically alter the solubility of other molecules in a medium can be exploited for the purpose of selective encapsulation and release.
机译:阳离子对称双子烷基烷二基-α,ω-双-(二甲基乙酰胺基溴化铵)系列(16-s-16,s = 5,6,缩写为G5和G6)与水溶助长剂(阳离子:苯胺盐酸盐,对甲苯胺盐酸盐) ,以及在298.15至313.15 K的四种不同温度下研究了水性介质中的邻甲苯胺盐酸盐;非离子型:苯酚,间苯二酚和邻苯三酚)。不同的物理化学参数,例如临界胶束浓度(cmc),相互作用参数( β〜m,代表过量混合的吉布斯自由能的能量参数,活性系数(f_i),理想混合条件下混合胶束中水溶助长剂的摩尔分数(X1〜(理想)),混合过量的自由能(△ _(混合)G°),胶束化的标准焓(△_(mic)H°),熵(△_(mic)S°)和吉布斯自由能(△_(mic)G°),然后进行评估内部压缩。为了进一步理解,对它们的常规对应物十六烷基三甲基溴化铵(CTAB)进行了类似的研究,然后进行了比较。使用克林特(Clint),鲁比(Rubihgh)和本村(Motomura)的不同理论模型探索了整体行为,以证明对双子序列和CTAB的水溶助长剂的不同二元组合的合理性和比较结果。在胶束的所有温度下,在所有二元组合中均观察到协同相互作用,该相互作用随着温度的升高而略有降低。这项研究将深入了解不同应用中表面活性剂的选择,因为它们的性质会因与水溶助长剂的相互作用而改变,从而影响其溶液行为,进而改变相形成行为,微乳液,液晶形成系统,混浊现象,清洁和洗衣过程,除了增溶。可以利用水溶助长剂显着改变其他分子在培养基中的溶解度的能力,以用于选择性包封和释放。

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