Fan Yaxun, Tang Haiqiu, Strand Ross, Wang Yilin
Key Laboratory of Colloid and Interface Science, Beijing National Laboratory for Molecular Sciences (BNLMS), Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, P. R. China.
Procter & Gamble Technology (Beijing) Co. Ltd, Beijing 101312, P. R. China.
Soft Matter. 2016 Jan 7;12(1):219-27. doi: 10.1039/c5sm02145f.
The influence of perfume molecules on the self-assembly of the anionic surfactant sodium dodecyl sulfate (SDS) and their localization in SDS micelles have been investigated by ζ potential, small angle X-ray scattering (SAXS), one- and two-dimensional NMR and isothermal titration microcalorimetry (ITC). A broad range of perfume molecules varying in octanol/water partition coefficients P are employed. The results indicate that the surface charge, size and aggregation number of the SDS micelles strongly depend on the hydrophobicity/hydrophilicity degree of perfume molecules. Three distinct regions along the log P values are identified. Hydrophilic perfumes (log P < 2.0) partially incorporate into the SDS micelles and do not lead to micelle swelling, whereas hydrophobic perfumes (log P > 3.5) are solubilized close to the end of the hydrophobic chains in the SDS micelles and enlarge the micelles with higher ζ potential and a larger aggregation number. The incorporated fraction and micelle properties show increasing tendency for the perfumes in the intermediate log P region (2.0 < log P < 3.5). Besides, the molecular conformation of perfume molecules also affects these properties. The perfumes with a linear chain structure or an aromatic group can penetrate into the palisade layer and closely pack with the SDS molecules. Furthermore, the thermodynamic parameters obtained from ITC show that the binding of the perfumes in the intermediate log P region is more spontaneous than those in the other two log P regions, and the micellization of SDS with the perfumes is driven by entropy.
通过ζ电位、小角X射线散射(SAXS)、一维和二维核磁共振以及等温滴定量热法(ITC),研究了香料分子对阴离子表面活性剂十二烷基硫酸钠(SDS)自组装的影响及其在SDS胶束中的定位。使用了一系列具有不同辛醇/水分配系数P的香料分子。结果表明,SDS胶束的表面电荷、尺寸和聚集数强烈依赖于香料分子的疏水/亲水性程度。沿着log P值确定了三个不同的区域。亲水性香料(log P < 2.0)部分掺入SDS胶束中,不会导致胶束膨胀,而疏水性香料(log P > 3.5)在SDS胶束中靠近疏水链末端被增溶,并使胶束增大,具有更高的ζ电位和更大的聚集数。对于中间log P区域(2.0 < log P < 3.5)的香料,掺入分数和胶束性质呈增加趋势。此外,香料分子的分子构象也会影响这些性质。具有线性链结构或芳环的香料可以渗透到栅栏层中,并与SDS分子紧密堆积。此外,从ITC获得的热力学参数表明,中间log P区域中香料的结合比其他两个log P区域中的香料更自发,并且SDS与香料的胶束化是由熵驱动的。