Yaghmur Anan, de Campo Liliana, Salentinig Stefan, Sagalowicz Laurent, Leser Martin E, Glatter Otto
Institute of Chemistry, University of Graz, Graz, Austria.
Langmuir. 2006 Jan 17;22(2):517-21. doi: 10.1021/la052109w.
In our recent work, we reported on the effect of varying temperature and solubilizing tetradecane (TC) on the structural transitions observed in dispersed particles based on the monolinolein (MLO)-water-TC system. At a given temperature, the addition of TC induces a transition of the internal structure from the bicontinuous cubic phase, Pn3m, to the reversed hexagonal, H2, and to the isotropic liquid phase (water-in-oil (W/O) microemulsions). Our present study focuses on the discovery of a Fd3m phase (reversed discontinuous micellar cubic), which is formed in the MLO-water-TC system at a specific TC/MLO weight ratio. It is situated between the H2 and the isotropic liquid phase (W/O microemulsion). Remarkably, it is not found in the absence of TC by increasing the temperature. The Fd3m structure was investigated in detail by means of small-angle X-ray scattering (SAXS), and cryogenic transmission electron microscopy (cryo-TEM). The present work proves that the structural transformation in the dispersed particles from H2 (hexosomes) to the W/O microemulsion system (emulsified microemulsion (EME)) is indirect and it occurs gradually via an emulsified intermediate phase. Specifically, in addition to the nanostructured aqueous dispersions described above, we present new TC-loaded aqueous dispersions with a confined intermediate phase, which is a discontinuous micellar cubic phase of the symmetry Fd3m. We denoted this type of emulsified particles as "micellar cubosomes".
在我们最近的工作中,我们报道了基于甘油单油酸酯(MLO)-水-十四烷(TC)体系,改变温度和增溶十四烷(TC)对分散颗粒中观察到的结构转变的影响。在给定温度下,添加TC会导致内部结构从双连续立方相Pn3m转变为反相六角相H2,再转变为各向同性液相(油包水(W/O)微乳液)。我们目前的研究重点是发现一种Fd3m相(反相不连续胶束立方相),它在特定的TC/MLO重量比下于MLO-水-TC体系中形成。它位于H2相和各向同性液相(W/O微乳液)之间。值得注意的是,在不添加TC的情况下,通过升高温度不会出现这种相。通过小角X射线散射(SAXS)和低温透射电子显微镜(cryo-TEM)对Fd3m结构进行了详细研究。目前的工作证明,分散颗粒中从H2(六边体)到W/O微乳液体系(乳化微乳液(EME))的结构转变是间接的,并且它通过乳化中间相逐渐发生。具体而言,除了上述纳米结构的水分散体之外,我们还展示了具有受限中间相的新型载TC水分散体,该中间相是对称Fd3m的不连续胶束立方相。我们将这种类型的乳化颗粒称为“胶束立方液晶”。