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Conductometric and fluorometric studies of sodium dodecyl sulphate in aqueous solution and in the presence of amino acids

机译:氨基酸存在下水溶液中十二烷基硫酸钠的电导和荧光分析

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The critical micelle concentration (CMC) of sodium dodecyl sulphate (SDS) in pure water and in the presence of amino acids (0.01, 0.02 and 0.03 mol kg~(?1)), L-valine (Val) and L-leucine (Leu) was determined from conductometric and fluorometric methods using pyrene as luminescence probe. Depression in the CMC at low concentration of amino acids is attributed to the increased hydrophobic–hydrophobic interaction between the non-polar groups of the surfactant, while, at high concentration, amino acids bind strongly with the anion, DS~?, head groups of SDS, thereby, delaying the micelle formation, resulting in increased CMC. A pronounced decrease in the CMC, while a marked increase in λ_+~0, with decrease in the solvated radius (rather than crystal radius) of the counterions is observed. Negative values of ?G_m~0 and ?H_m~0 indicate that micellisation of SDS in the presence of amino acids is thermodynamically spontaneous and exothermic. Highest negative value of ?H_m~0 in 0.01 m Val, with lowest CMC value, shows that 0.01 m aqueous Val is the most suitable medium favouring the micellisation of SDS. Decrease in I_1/I_3 from Val to Leu confirms the relative hydrophobicity of two amino acids. The observed values of the packing parameter, P, of SDS in water and in aqueous amino acids suggest that micelles formed are spherical in nature.
机译:十二烷基硫酸钠(SDS)在纯水中和存在氨基酸(0.01、0.02和0.03 mol kg〜(?1)),L-缬氨酸(Val)和L-亮氨酸( Leu)是使用conduct作为发光探针通过电导和荧光法测定的。在低浓度氨基酸下,CMC的降低归因于表面活性剂非极性基团之间疏水性-疏水性相互作用的增强,而在高浓度下,氨基酸与阴离子DS〜β的头基牢固结合。 SDS,从而延迟了胶束的形成,导致CMC增加。观察到CMC显着降低,而λ_+〜0显着增加,并且抗衡离子的溶剂化半径(而不是晶体半径)减小。 ΔG_m〜0和ΔH_m〜0的负值表明在存在氨基酸的情况下SDS的胶束化是热力学自发和放热的。 0.01 m Val中ΔH_m〜0的最高负值和CMC值最低,表明0.01 m Val水溶液是最有利于SDS胶束化的介质。 I_1 / I_3从Val减少到Leu证实了两个氨基酸的相对疏水性。水和氨基酸水溶液中SDS的堆积参数P的观测值表明,形成的胶束本质上是球形的。

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