Department of Chemical and Petroleum Engineering, University of Calgary , 2500 University Dr. NW, Calgary, AB T2N 1N4, Canada.
Langmuir. 2016 Jul 19;32(28):7109-16. doi: 10.1021/acs.langmuir.6b00873. Epub 2016 Jul 8.
Classical (surfactant stabilized) and Pickering (particle stabilized) type emulsions have been widely studied to elucidate the mechanisms by which emulsion stabilization is achieved. In Pickering emulsions, a key defining factor is that the stabilizing particles reside at the liquid-liquid interface providing a mechanical barrier to droplet coalescence. This interfacial adsorption is achieved through the use of nanoparticles that are partially wet by both liquid phases, often through covalent surface modification of or surfactant adsorption to the nanoparticle surfaces. Herein, we demonstrate particle-induced stabilization of an oil-in-water emulsion with fully water wet nanoparticles (no interfacial adsorption) via synergistic interaction with low concentrations of surfactants. Laser scanning confocal microscopy analysis allows for unique and vital insights into the properties of these emulsions via both three-dimensional imaging and real-time monitoring of particle dynamics at the oil-water interface. Investigation of these "non-Pickering" particle stabilized emulsions suggests that the nonadsorbed particles impart stability to the emulsion primarily via entropic forces imparted by the accumulation of silica nanoparticles in the coherent phase between dispersed oil droplets.
经典(表面活性剂稳定)和 Pickering(颗粒稳定)型乳液已被广泛研究,以阐明乳液稳定的机制。在 Pickering 乳液中,一个关键的定义因素是稳定颗粒位于液-液界面,为液滴聚结提供机械屏障。这种界面吸附是通过使用部分润湿两种液相的纳米颗粒来实现的,通常是通过纳米颗粒表面的共价表面改性或表面活性剂吸附。本文通过协同作用低浓度表面活性剂,用完全水润湿的纳米颗粒(无界面吸附)证明了对油包水乳液的颗粒诱导稳定。激光扫描共焦显微镜分析通过对油-水界面处颗粒动力学的三维成像和实时监测,为这些乳液的特性提供了独特而重要的见解。对这些“非 Pickering”颗粒稳定乳液的研究表明,未吸附的颗粒主要通过在分散油滴之间的相干相中积累二氧化硅纳米颗粒赋予乳液熵力来赋予乳液稳定性。