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A SANS study for structural transition of micelles of cationic octadecyl trimethyl ammonium chloride and anionic ammonium dodecyl sulfate surfactants in aqueous solutions

机译:SANS研究阳离子十八烷基三甲基氯化铵和阴离子十二烷基硫酸铵表面活性剂在水溶液中的胶束结构转变

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摘要

The sizes and structures of micelles formed in aqueous solutions of cationic octadecyl trimethyl ammonium chloride (OTAC) and anionic ammonium dodecyl sulfate (ADS) surfactants were investigated using small angle neutron scattering (SANS). For aqueous OTAC solutions, SANS data indicate that the structure of micelles is of sphere with core and hydrated shell up to OTAC 50. mM. As the total OTAC concentration increases, SANS data show that the micelles become larger and the transition in micellar shape from sphere to oblate ellipsoid takes place. For aqueous ADS solutions, SANS data point to the micelle structure of sphere with core and shell but this time up to ADS 100. mM. Above this concentration the spherical micelles changes to oblate ellipsoid with core and hydrated shell. The surfactant concentration at which micelle shape changes is termed as the shape transition concentration which is 50mM for OTAC and 100mM for ADS. Such transitions may be explained qualitatively by the distortion of the hydrocarbon chains at high surfactant concentrations. When micelles are large, a number of hydrocarbon chains of the surfactant molecules should be accommodated in the core of the micelle and therefore the chains are likely to be distorted. That is why the micelle shape changes from sphere to ellipsoid and the ellipsoidal axial ratio (R_a/R_b or R_(a,core)/R_(b,core)) must increase. This is reflected in the linear relationship between the ellipsoidal axial ratio and the aggregation number.
机译:使用小角度中子散射(SANS)研究了在阳离子十八烷基三甲基氯化铵(OTAC)和阴离子十二烷基硫酸铵(ADS)表面​​活性剂的水溶液中形成的胶束的大小和结构。对于OTAC水溶液,SANS数据表明,胶束的结构为球形,具有高达OTAC 50. mM的核和水合壳。随着总OTAC浓度的增加,SANS数据表明,胶束变大,并且发生了胶束形状从球形到扁球形的转变。对于ADS水溶液,SANS数据指向带有核和壳的球形胶束结构,但这次高达100. mM。高于此浓度,球形胶束变为具有核和水合壳的扁椭圆形。胶束形状改变的表面活性剂浓度称为形状转变浓度,对于OTAC为50mM,对于ADS为100mM。可以通过在高表面活性剂浓度下烃链的变形来定性地解释这种转变。当胶束大时,表面活性剂分子的许多烃链应被容纳在胶束的核中,因此该链很可能变形。这就是为什么胶束形状从球形变为椭圆形,并且椭圆形的轴向比率(R_a / R_b或R_(a,core)/ R_(b,core))必须增加的原因。这反映在椭圆轴比与聚集数之间的线性关系中。

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