Jia Kangle, Guo Yongshun, Yu Yue, Zhang Junjie, Yu Longfei, Wen Wu, Mai Yuliang
Guangdong Provincial Key Laboratory of Industrial Surfactant, Institute of Chemical Engineering, Guangdong Academy of Sciences, Guangzhou 510000, Guangdong, P. R. China.
Soft Matter. 2021 Mar 28;17(12):3346-3357. doi: 10.1039/d1sm00081k. Epub 2021 Feb 25.
Using solely highly hydrophilic particles to stabilize emulsions, especially high internal phase emulsions, has always been an important challenge. Here pH-responsive Pickering emulsions stabilized by a low concentration of bare highly hydrophilic Ludox CL nanoparticles without surface modification or addition of surfactants are developed at neutral pH. The dispersed nanoparticles can be transformed into an aggregate state with a network-like structure near the isoelectric point, which contributes to the stabilization of the emulsions. Moreover, the vdW attraction between particles and droplets also plays a key role in the formation of emulsions, which can make the aggregated nanoparticles adsorb tightly around the droplets rather than penetrate the oil-water interface. The formed protective armor and network-like aggregates separate droplets from each other to prevent coalescence. At a low nanoparticle concentration (0.5 wt%), a high internal phase emulsion can be formed and can last up to half a year. This system can emulsify not only the hydrocarbon oil but also the fluoroalkane oil phase. Finally, organic-inorganic composite particles are fabricated using the template action of the Pickering emulsions. The method of preparing composite particles is more convenient than the traditional Pickering emulsion polymerization which often requires the modification of the surface of the hydrophilic particles or the addition of auxiliary monomers. This study provides a simple green strategy for the preparation of a more stable Pickering emulsion stabilized by surface-inactive nanoparticles and will broaden the scope of applications.
仅使用高度亲水的颗粒来稳定乳液,尤其是高内相乳液,一直是一项重大挑战。在此,通过低浓度未进行表面改性或添加表面活性剂的裸露高度亲水的硅溶胶CL纳米颗粒在中性pH条件下制备了pH响应型皮克林乳液。在等电点附近,分散的纳米颗粒可转变为具有网络状结构的聚集态,这有助于乳液的稳定。此外,颗粒与液滴之间的范德华引力在乳液形成过程中也起着关键作用,它可使聚集的纳米颗粒紧密吸附在液滴周围而非穿透油水界面。形成的保护壳和网络状聚集体将液滴彼此分隔开以防止聚并。在低纳米颗粒浓度(0.5 wt%)下,可形成高内相乳液且可持续长达半年。该体系不仅能乳化烃类油,还能乳化氟代烷油相。最后,利用皮克林乳液的模板作用制备了有机无机复合颗粒。制备复合颗粒的方法比传统的皮克林乳液聚合更简便,传统方法通常需要对亲水颗粒表面进行改性或添加辅助单体。本研究为制备由表面惰性纳米颗粒稳定的更稳定皮克林乳液提供了一种简单的绿色策略,并将拓宽其应用范围。