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首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Micellization Behavior of Antidepressant Imipramine Hydrochloride Drug and Hydrotrope (Sodium Tosylate) Mixtures at Different Compositions and Temperatures in Different Media
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Micellization Behavior of Antidepressant Imipramine Hydrochloride Drug and Hydrotrope (Sodium Tosylate) Mixtures at Different Compositions and Temperatures in Different Media

机译:不同组成和不同培养基中的不同组成和温度的盐酸盐酸脂盐药物和水溶液(甲磺酸钠)混合物的胶束化行为

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The effects of various concentrations of sodium tosylate (NaT) hydrotrope on aggregation phenomena of antidepressant drug imipramine hydrochloride (IH) were investigated at four different temperatures (288.15-303.15 K having a gap of 5 K) in detail in three diverse solvents (aqueous/NaCl/urea (UR)). Various reported theoretical models were applied to evaluate different physicochemical parameters regarding the mixed micellization. Obtained values of critical micelle concentration (cmc) and ideal cmc (cmc(id)) point out the formation of mixed micelles among the constituents. By employing different models, the values of micellar mole fractions (X-1(Rub), X-1(Rd), and X-1(id)) of hydrotrope were computed, and the results show the larger involvement of employed hydrotrope in the solution mixture. The effects of additives, for instance, NaCl and UR, were also investigated on the micellization behavior of a singular and mixed system using conductivity measurement. The employed concentration of salt and UR decreases and increases the cmc of the system, respectively. The obtained interaction parameter (beta) of the studied system is negative in the entire temperature range along with compositions signifying the interactions between the ingredient. The activity coefficients determined by both models forever achieved less than 1 in all cases viewing the nonideality of systems. The different thermodynamic parameters showed the spontaneity in mixed micelle formation in all systems of different media. The activity coefficients were analyzed using the employed models and were found to be less than 1 in entire cases viewing the attractive nonideal behavior.
机译:在三种不同的温度(288.15-303.15k)中,在三种不同的溶剂中详细研究了各种浓度的甲苯胺(NAT)水路盐酸钠(288.15-303.15K)的盐酸脂盐酸盐(IH)的聚集现象(IH)(288.15-303.15k)(含水/ NaCl /尿素(UR))。应用各种报告的理论模型来评估关于混合胶束的不同物理化学参数。获得的临界胶束浓度(CMC)和理想的CMC(CMC(ID))的值指出组分中混合胶束的形成。通过采用不同的模型,计算水路术的胶束摩尔分数(X-1(摩擦),X-1(RD)和X-1(ID)的值,结果表明使用的水路术较大溶液混合物。还研究了使用电导测量的奇异和混合系统的胶束化行为的添加剂的作用。使用的盐和UR的浓度降低并分别增加了系统的CMC。所得型系统的所得相互作用参数(β)在整个温度范围内具有阴性,以及在致力于成分之间的相互作用的组合物。在查看系统的非前沿,所有模型决定的活动系数永远达到1小于1。不同的热力学参数在不同介质的所有系统中显示了混合胶束形成的自发性。使用所用的模型分析活性系数,并在整个情况下发现在患有吸引人的非膜行为中的整个情况下小于1。

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