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模型香水对表面活性剂及混合表面活性剂自组装的影响。

Impact of model perfumes on surfactant and mixed surfactant self-assembly.

作者信息

Penfold J, Tucker I, Green A, Grainger D, Jones C, Ford G, Roberts C, Hubbard J, Petkov J, Thomas R K, Grillo I

机构信息

ISIS, CCLRC, Rutherford Appleton Laboratory, Chilton, Didcot, OXON, UK.

出版信息

Langmuir. 2008 Nov 4;24(21):12209-20. doi: 10.1021/la801662g. Epub 2008 Oct 9.

Abstract

The impact of some model perfumes on surfactant self-assembly has been investigated, using small-angle neutron scattering. A range of different model perfumes, with differing degrees of hydrophilicity/hydrophobicity, have been explored, and in order of increasing hydrophobicity include phenyl ethanol (PE), rose oxide (RO), limonene (LM), linalool (LL), and dihydrogen mercenol (DHM). The effect of their solubilization on the nonionic surfactant micelles of dodecaethylene monododecyl ether (C12EO12) and on the mixed surfactant aggregates of C12EO12 and the cationic dialkyl chain surfactant dihexadecyl dimethyl ammonium bromide (DHDAB) has been quantified. For PE and LL the effect of their solubilization on the micelle, mixed micelle/lamellar and lamellar regimes of the C12EO12/DHDAB mixtures, has also been determined. For the C12EO12 and mixed DHDAB/C12EO12 micelles PE is solubilized predominantly at the hydrophilic/hydrophobic interface, whereas the more hydrophobic perfumes, from RO to DHM, are solubilized predominantly in the hydrophobic core of the micelles. For the C12EO12 micelles, with increasing perfume concentration, the more hydrophobic perfumes (RO to DHM) promote micellar growth. Relatively modest growth is observed for RO and LM, whereas substantial growth is observed for LL and DHM. In contrast, for the addition of PE the C12EO12 micelles remain as relatively small globular micelles, with no significant growth. For the C12EO12/DHDAB mixed micelles, the pattern of behavior with the addition of perfume is broadly similar, except that the micellar growth with increasing perfume concentration for the more hydrophobic perfumes is less pronounced. In the Lbeta (Lv) region of the DHDAB-rich C12EO12/DHDAB phase diagram, the addition of PE results in a less structured (less rigid) lamellar phase, and ultimately a shift toward a structure more consistent with a sponge or bicontinuous phase. In the mixed L1/Lbeta region of the phase diagram PE induces a slight shift in the coexistence from Lbeta toward L1. The addition of LL to the Lbeta (Lv) region of the DHDAB-rich C12EO12/DHDAB phase diagram also results in a reduction in the lamellar structure (less rigid lamellae), and a shift toward a structure more consistent with a sponge or bicontinuous phase, or a coexisting phase of small vesicles. For the mixed L1/Lbeta region of the phase diagram LL induces a shift toward a greater L beta component.

摘要

利用小角中子散射研究了一些模型香料对表面活性剂自组装的影响。研究了一系列不同的模型香料,它们具有不同程度的亲水性/疏水性,按照疏水性增加的顺序包括苯乙醇(PE)、氧化玫瑰(RO)、柠檬烯(LM)、芳樟醇(LL)和二氢巯基乙醇(DHM)。已对它们在十二乙烯单十二烷基醚(C12EO12)的非离子表面活性剂胶束以及C12EO12与阳离子双烷基链表面活性剂二己基二甲基溴化铵(DHDAB)的混合表面活性剂聚集体中的增溶作用进行了量化。对于PE和LL,还确定了它们在C12EO12/DHDAB混合物的胶束、混合胶束/层状和层状区域中的增溶作用。对于C12EO12和混合的DHDAB/C12EO12胶束,PE主要在亲水/疏水界面增溶,而疏水性更强的香料,从RO到DHM,主要在胶束的疏水核心增溶。对于C12EO12胶束,随着香料浓度的增加,疏水性更强的香料(RO到DHM)促进胶束生长。观察到RO和LM的生长相对较小,而LL和DHM的生长显著。相比之下,加入PE后,C12EO12胶束仍保持相对较小的球状胶束,没有明显生长。对于C12EO12/DHDAB混合胶束,添加香料后的行为模式大致相似,只是对于疏水性更强的香料,随着香料浓度增加的胶束生长不太明显。在富含DHDAB的C12EO12/DHDAB相图的Lβ(Lv)区域,添加PE会导致层状相结构较少(刚性较小),最终向更符合海绵状或双连续相的结构转变。在相图的混合L1/Lβ区域,PE会使共存相从Lβ向L1略有偏移。向富含DHDAB的C12EO12/DHDAB相图的Lβ(Lv)区域添加LL也会导致层状结构减少(层状刚性较小),并向更符合海绵状或双连续相或小囊泡共存相的结构转变。对于相图的混合L1/Lβ区域,LL会导致向更大的Lβ组分偏移。

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