Department of Applied Chemistry, Hanyang University, 55 Hanyangdaehak-ro, Sangnok-gu, Ansan, Gyeonggi-do 426-791, Republic of Korea.
J Colloid Interface Sci. 2014 Jan 1;413:100-5. doi: 10.1016/j.jcis.2013.09.015. Epub 2013 Sep 25.
Typical Pickering emulsions accumulate particles to form a robust colloidal layer at an immiscible liquid-liquid interface. However, if the particles are smaller than tens of nanometers, they have a tendency toward coming off from the interface, thereby destabilizing emulsion drops. To solve this problem, a technique that can make the adsorbed nanoparticles stay at the interface should be developed. This study introduces a practical method that allows us to obtain a mechanically stable Pickering emulsions; n-decane was emulsified to form an oil-in-water emulsion of which interface was stabilized with a complex colloidal layer consisting of 12 nm-sized silica nanoparticles, a poly(vinyl alcohol) binder, and an alkyl-chained silane coupling agent. We have found that in the conditions of high salinity, the emulsion drops attract each other and form an emulsion gel phase. However, even in such harsh conditions, the complex silica layer maintains its original structure at the interface, thus stabilizing the emulsion drop against coalescence.
典型的 Pickering 乳液会在不混溶的液-液界面处聚集颗粒,形成坚固的胶体层。然而,如果颗粒小于几十纳米,它们就有从界面上脱落的趋势,从而使乳液液滴不稳定。为了解决这个问题,应该开发一种可以使吸附的纳米颗粒留在界面上的技术。本研究介绍了一种实用的方法,可以使我们获得机械稳定的 Pickering 乳液;正十二烷被乳化形成油包水乳液,其界面由由 12nm 大小的二氧化硅纳米颗粒、聚乙烯醇粘结剂和烷基链硅烷偶联剂组成的复杂胶体层稳定。我们发现,在高盐度条件下,乳液液滴相互吸引并形成乳液凝胶相。然而,即使在如此恶劣的条件下,复杂的硅层仍能在界面处保持其原始结构,从而稳定乳液液滴,防止聚结。