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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >DETERMINATION OF INTERFACIAL CO-ION CONCENTRATION IN IONIC MICELLES BY CHEMICAL TRAPPING - HALIDE CONCENTRATION AT THE INTERFACE OF SODIUM DODECYL SULFATE MICELLES
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DETERMINATION OF INTERFACIAL CO-ION CONCENTRATION IN IONIC MICELLES BY CHEMICAL TRAPPING - HALIDE CONCENTRATION AT THE INTERFACE OF SODIUM DODECYL SULFATE MICELLES

机译:化学捕集-十二烷基硫酸钠胶束界面处的卤化物浓度测定离子胶束中的界面钴离子浓度

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Products from the spontaneous reaction of a long-chain arenediazonium salt, 2,6-dimethyl-4-hexadecylbenzenediazonium tetrafluoroborate(16-ArN2BF4), in aqueous micellar solutions of sodium dodecyl sulfate (SDS)? are used to estimate the local concentration of chloride and bromide ions at the micellar surface. The arenediazonium ion, 16-ArN2+, which is totally bound to the SDS micelle, reacts by rate-determining loss of N-2 to give an aryl cation that traps available nucleophiles, i,e., H2O, Cl-, and Br-, to give stable phenol, 16-ArOH, and halobenzene products, 16-ArCl and 16-ArBr, respectively. Product yields, determined by HPLC, are related to local concentrations using calibration curves obtained from independent standards. The local concentrations determined by this method are consistent with co-ion concentrations calculated, using a cell model, by numerical integration of the Poisson-Boltzmann equation (PBE) taking into account salt-induced micellar growth. The salt dependence of the intel facial concentrations of Cl- and Br- are identical. indicating no specific interactions in the interfacial co-ion compartment. PBE calculations predict that, in micellar SDS, increasing the concentration of a particular halide salt (NaX) at constant concentration of another halide (NaY) should result in an increase in the local concentrations of both co-ions. Using this chemical-trapping method, this prediction was demonstrated experimentally. [References: 25]
机译:在十二烷基硫酸钠(SDS)的胶束水溶液中,长链芳二唑鎓盐,2,6-二甲基-4-十六烷基苯重氮四氟硼酸盐(16-ArN2BF4)的自发反应产生的产物?用于估计胶束表面氯离子和溴离子的局部浓度。完全与SDS胶束结合的二氮杂芳鎓离子16-ArN2 +通过速率确定N-2的损失进行反应,以生成可捕获可用亲核试剂(即H2O,Cl-和Br-)的芳基阳离子分别得到稳定的苯酚,16-ArOH和卤代苯产物16-ArCl和16-ArBr。通过HPLC测定的产品产量与使用独立标准品获得的校准曲线的局部浓度相关。通过这种方法确定的局部浓度与使用细胞模型通过考虑盐诱导的胶束生长的泊松-玻尔兹曼方程(PBE)的数值积分计算出的共离子浓度一致。 Cl-和Br-的面部面部浓度对盐的依赖性相同。表示在界面共离子室中没有特定的相互作用。 PBE计算预测,在胶束SDS中,在恒定浓度的另一种卤化物(NaY)下增加特定卤化物盐(NaX)的浓度应会导致两种共离子的局部浓度增加。使用这种化学诱捕方法,通过实验证明了这一预测。 [参考:25]

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