首页> 外文期刊>Journal of surface science and technology >Micellization of Cetylpyridinium Chloride in Aqueous Lithium Chloride, Sodium Chloride and Potassium Chloride Media
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Micellization of Cetylpyridinium Chloride in Aqueous Lithium Chloride, Sodium Chloride and Potassium Chloride Media

机译:氯化十六烷基吡啶在氯化锂,氯化钠和氯化钾介质中的胶束化

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摘要

Surface tension and electrical conductance of cetylpyridinium chloride (CPC) in water were measured in the presence of lithium chloride, sodium chloride and potassium chloride at 295, 298 and 303 K. From these experimental data, critical micelle concentration, surface density, counter-ion binding constant and standard free energy of micellization of CPC were determined and no effect of co-ion on these parameters is found. Critical micelle concentration has a minimum around 298 K. Surface density of CPC at the air - water interface increased by the addition of electrolyte. The surface area per molecule of CPC at the air - water interface is about 63 percent more compared to that of sodium dodecyl sulfate molecule and hence the pyridine ring of the adsorbed CPC molecule appears to reside at the interface. Aggregation numbers of CPC were estimated from the electrical conductance data by applying the mixed electrolyte model. In the presence of more than 5.2 X 10~(-4) mol kg~(-1) NaCl, aggregation number of CPC is found to be higher than that in the presence of LiCl and KC1 thereby indicating the possibility of co-ion effect on the aggregation number.
机译:在存在氯化锂,氯化钠和氯化钾的情况下,分别在295、298和303 K下测量鲸蜡基吡啶鎓氯化物(CPC)在水中的表面张力和电导率。根据这些实验数据,可确定临界胶束浓度,表面密度,抗衡离子测定了CPC胶束化的结合常数和标准自由能,未发现钴离子对这些参数的影响。临界胶束浓度最低约为298K。通过添加电解质,空气-水界面处CPC的表面密度增加。与十二烷基硫酸钠分子相比,CPC分子在空气-水界面的表面积约多63%,因此被吸附的CPC分子的吡啶环似乎位于该界面。通过应用混合电解质模型,从电导率数据估算CPC的聚集数。发现存在大于5.2 X 10〜(-4)mol kg〜(-1)NaCl时,CPC的聚集数高于存在LiCl和KC1时的CPC,因此表明存在共离子效应的可能性在聚合编号上。

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