Guillot Samuel, Bergaya Faïza, de Azevedo Christine, Warmont Fabienne, Tranchant Jean-François
Centre de Recherche sur la Matière Divisée, UMR 6619, Université d'Orléans-CNRS, 1b Rue de la Férollerie, F-45071 Orléans Cedex 2, France.
J Colloid Interface Sci. 2009 May 15;333(2):563-9. doi: 10.1016/j.jcis.2009.01.026. Epub 2009 Feb 24.
The present study aims to describe emulsion particles containing a dispersed phase composed of nanostructured lipid mesophases and stabilized by montmorillonite and/or Laponite clay platelets. The size distributions of these emulsion particles were found independent of the clay mineral content and of the initial internal composition that determines the internal structure. The stabilization of the droplets by a shell of smectite layers was found possible even by montmorillonite which has a length of the same order or more than the droplets to stabilize. The clay platelets give a local flatness to the droplets that may influence the internal structure. In this paper, we describe the conditions to obtain such soft particles of about 220 nm, and we show by direct visualization the internal mesophase complexity and the shape of the particles. In particular, TEM analysis showed elongated particles with bent-back channels at their center but a different morphology at the periphery due to flat border conditions imposed by the presence of the clay minerals.
本研究旨在描述一种乳液颗粒,其分散相由纳米结构脂质中间相组成,并由蒙脱石和/或锂皂石粘土薄片稳定。发现这些乳液颗粒的尺寸分布与粘土矿物含量以及决定内部结构的初始内部组成无关。即使是长度与待稳定液滴相同或更长的蒙脱石,也能通过蒙脱石层壳实现液滴的稳定。粘土薄片使液滴具有局部平整度,这可能会影响内部结构。在本文中,我们描述了获得约220 nm这种软颗粒的条件,并通过直接可视化展示了内部中间相的复杂性和颗粒形状。特别是,透射电子显微镜分析显示,颗粒呈细长状,中心有向后弯曲的通道,但由于粘土矿物的存在导致边缘处边界平坦,颗粒外围形态不同。