首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Rate-retarding effects of mixed anionicon-ionic micelles on the alkaline hydrolysis of the chloropentamminocobalt(III) complex - Role of the anionic surfactant chain nature
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Rate-retarding effects of mixed anionicon-ionic micelles on the alkaline hydrolysis of the chloropentamminocobalt(III) complex - Role of the anionic surfactant chain nature

机译:阴离子/非离子混合胶束对氯戊酰胺基钴(III)配合物碱水解的缓速作用-阴离子表面活性剂链性质的作用

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Rate data for the alkaline hydrolysis of the chloropentaamminecobalt(III) cation in the presence of mixed micelles composed of (i) anionic sodium decylsulphate (SDeS) and non-ionic dodecylpenta(oxyethylene glycol) monoether (C12E5) surfactants and (ii) anionic sodium perfluorooctanoate (SPFO) and non-ionic C12E5 surfactants has been obtained at T 298 K and constant electrolyte concentration 0.08 mol dm(-3) ([NaOH] = 0.01 mol dm(-3), [NaClO4] = 0.07 mol dm-3) over a wide range of total surfactant concentration (Q and anionic mole fraction (X). The critical micelle concentrations (c.m.c.s) of the mixed micelles have been determined over the entire chi range by means of surface tension measurements. The experimental data have been analyzed by the regular solution model for non-ideal mixing. The estimated negative values of the interaction parameter beta indicate that attractive interactions between the two types of surfactants in the mixed anionicon-ionic micelles take place. The kinetic data have shown that, at all mole fraction examined, at surfactant concentrations below the critical micelle concentration the rate constant values are not significantly influenced by the presence of surfactants while beyond the c.m.c. value, in all cases examined, the rate constant is conspicuously inhibited. The reaction rates decrease with increasing C-t (at constant chi) and chi (at constant C-t) to an extent which depends on the nature of the anionic surfactant used, i.e., the hydrogenated anionic surfactant is much more effective in inhibiting the hydrolysis process than the fluorinated one. The kinetic data, interpreted quantitatively by applying the pseudo-phase ion exchange model, indicate that two reaction paths contribute to the overall hydrolysis rate and that the binding constant of the complex (K-M) decreases markedly as chi decreases. These findings have been attributed to the reduction of the charge density at the mixed micellar surface. Moreover, the K-M values indicate that the capacity of the hydrogenated anionic micelles to bind the cobalt complex is higher than that of the fluorinated anionic micelle-forming surfactant. The present findings have been compared with those previously obtained concerning the effects of other aggregated systems upon the rate of the same hydrolysis reaction. (c) 2005 Elsevier B.V. All rights reserved.
机译:在由(i)阴离子癸基硫酸钠(SDeS)和非离子十二烷基五(氧乙二醇)单醚(C12E5)表面活性剂和(ii)阴离子钠组成的混合胶束的存在下,对氯戊胺基钴(III)阳离子进行碱水解的速率数据已在T 298 K和恒定电解质浓度0.08 mol dm(-3)([NaOH] = 0.01 mol dm(-3),[NaClO4] = 0.07 mol dm-3的条件下获得了全氟辛酸酯(SPFO)和非离子C12E5表面活性剂)在很宽的总表面活性剂浓度(Q和阴离子摩尔分数(X))范围内。通过表面张力测量确定了在整个chi范围内混合胶束的临界胶束浓度(cmcs)。通过常规溶液模型进行非理想混合的分析,相互作用参数β的估计值为负,表明在混合的阴离子/非离子胶束中两种类型的表面活性剂之间发生了有吸引力的相互作用。 c数据表明,在所考察的所有摩尔分数下,在低于临界胶束浓度的表面活性剂浓度下,速率常数值不受c.m.c的影响不受表面活性剂的存在显着影响。在所有检查的情况下,速率常数都明显受到抑制。反应速率随Ct(在常数chi下)和chi(在常数Ct下)的增加而降低,降低的程度取决于所用阴离子表面活性剂的性质,即,氢化的阴离子表面活性剂在抑制水解过程方面比在表面活性剂上更有效。氟化的。通过应用伪相离子交换模型定量解释的动力学数据表明,两条反应路径有助于总体水解速率,并且随着chi的降低,配合物(K-M)的结合常数显着降低。这些发现归因于混合胶束表面电荷密度的降低。而且,K-M值表明氢化阴离子胶束结合钴配合物的能力高于氟化阴离子胶束形成表面活性剂的能力。将本发现与先前获得的关于其他聚集体系对相同水解反应速率的影响进行比较。 (c)2005 Elsevier B.V.保留所有权利。

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