Department of Chemistry, Faculty of Science, University of Malaya, 50603 Kuala Lumpur, Malaysia.
J Phys Chem B. 2010 Jun 24;114(24):8089-99. doi: 10.1021/jp102109q.
Pseudofirst-order rate constants for aqueous cleavage of N-(2'-hydroxyphenyl)phthalimide (1), obtained at 0.001 M NaOH, 2 x 10(-4) M 1, 2% v/v CH(3)CN, and 30 degrees C, show a nonmonotonic decrease with the increase in the total concentration of cetyltrimethylammonium bromide (CTABr) within its range >/=9 x 10(-5)-<or= 0.17 M. Similar observations have been obtained in the presence of the constant concentration of NaBr at <or=0.02 M. The values of k(obs) become independent of CTABr at >or=0.04 M CTABr and within a [NaBr] range of 0.0-0.005 M. These observations, in view of the pseudophase (PP) model of the micelle, reveal the presence of presumably spherical micelles at <or=3 x 10(-4) M CTABr in the presence of a constant concentration of NaBr within its range of 0.0-0.01 M. The average value of the CTABr micellar binding constant (K(S)) of ionized 1 (i.e., 1(-)), under these conditions, is (1.88 +/- 0.62) x 10(3) M(-1). The increase in CTABr at >or=4 x 10(-4) M causes a micellar structural transition from most likely spherical to cylindrical, which is evident from the increase in K(S) values from 3.46 x 10(3) to 11.4 x 10(3) M(-1) with the increase in CTABr from 4 x 10(-4) to approximately 1 x 10(-3) M in the absence of NaBr. The values of k(obs) at different [NaBr] and at a constant CTABr follow a kinetic relationship derived from an empirical equation coupled with a PP model of micelle. This relationship gives the value of a kinetic parameter, F(X/S), which represents the fraction of micellized S(-) (S(-) = 1(-)) transferred to the aqueous phase by the limiting concentration of X(-) (X(-) = Br(-)) through ion exchange X(-)/S(-). The value of F(Br/1) is 0.65 +/- 0.12.
在 0.001 M NaOH、2 x 10(-4) M 1、2% v/v CH(3)CN 和 30°C 的条件下,N-(2'-羟基苯基)邻苯二甲酰亚胺(1)在水溶液中的假一级速率常数随着十六烷基三甲基溴化铵(CTABr)总浓度的增加而呈非单调下降,其范围为 >/=9 x 10(-5)-<or= 0.17 M。在存在 <or=0.02 M 恒定浓度的 NaBr 时也观察到类似的现象。在 >or=0.04 M CTABr 时,CTABr的 k(obs)值变得独立于 CTABr,并且在 0.0-0.005 M 的 NaBr 范围内。鉴于胶束的拟相(PP)模型,这些观察结果表明,在存在恒定浓度的 NaBr 的情况下,在 3 x 10(-4) M CTABr 以下,可能存在球形胶束。在这些条件下,带电荷的 1(即 1(-))的 CTABr 胶束结合常数(K(S))的平均值为(1.88 +/- 0.62)x 10(3) M(-1)。在 >or=4 x 10(-4) M 时,CTABr的增加导致胶束结构从可能的球形向圆柱形转变,这从 K(S)值从 3.46 x 10(3)增加到 11.4 x 10(3) M(-1)随着 CTABr从 4 x 10(-4) 增加到大约 1 x 10(-3) M 而变得明显,而在不存在 NaBr 的情况下。在不同的 [NaBr] 和恒定的 CTABr下的 k(obs)值遵循从经验方程耦合到胶束的拟相模型得出的动力学关系。该关系给出了动力学参数 F(X/S)的值,该参数表示通过离子交换 X(-)/S(-),通过限制浓度的 X(-)(X(-) = Br(-))转移到水相的胶束化 S(-)(S(-) = 1(-))的分数。F(Br/1)的值为 0.65 +/- 0.12。