Haney Bobby, Chen Dong, Cai Li-Heng, Weitz David, Ramakrishnan Subramanian
Department of Chemical and Biomedical Engineering , FAMU-FSU Engineering , Tallahassee , Florida 32310 , United States.
College of Chemical and Biological Engineering , Zhejiang University , Zhejiang 310027 , China.
Langmuir. 2019 Apr 2;35(13):4693-4701. doi: 10.1021/acs.langmuir.9b00058. Epub 2019 Mar 21.
The ability to make stable water-in-oil and oil-in-water millimeter-size Pickering emulsions is demonstrated using Janus particles-particles with distinct surface chemistries. The use of a highly cross-linked hydrophobic polymer network and the excellent water-wetting nature of a hydrogel as the hydrophobic and hydrophilic sides, respectively, permit distinct wettability on the Janus particle. Glass capillary microfluidics allows the synthesis of Janus particles with controlled sizes between 128 and 440 μm and control over the hydrophilic-to-hydrophobic domain volume ratio of the particle from 0.36 to 12.77 for a given size. It is shown that the Janus particle size controls the size of the emulsion drops, thus providing the ability to tune the structure and stability of the resulting emulsions. Stability investigations using centrifugation reveal that particles with the smallest size and a balanced hydrophilic-to-hydrophobic volume ratio (Janus ratio) form emulsions with the greatest stability against coalescence. Particles eventually jam at the interface to form nonspherical droplets. This effect is more pronounced as the hydrogel volume is increased. The large Janus particles permit facile visualization of particle-stabilized emulsions, which result in a better understanding of particle stabilization mechanisms of formed emulsions.
利用具有不同表面化学性质的Janus颗粒,展示了制备稳定的毫米级油包水和水包油Pickering乳液的能力。分别使用高度交联的疏水聚合物网络和水凝胶优异的水润湿性作为疏水和亲水侧,使得Janus颗粒具有不同的润湿性。玻璃毛细管微流控技术能够合成尺寸在128至440μm之间可控的Janus颗粒,并能在给定尺寸下将颗粒的亲水与疏水区域体积比控制在0.36至12.77之间。结果表明,Janus颗粒的尺寸控制着乳液滴的大小,从而具备调节所得乳液结构和稳定性的能力。通过离心进行的稳定性研究表明,尺寸最小且亲水与疏水体积比平衡(Janus比)的颗粒形成的乳液具有最强的抗聚并稳定性。颗粒最终在界面处堵塞,形成非球形液滴。随着水凝胶体积的增加,这种效应更加明显。大尺寸的Janus颗粒使颗粒稳定的乳液易于可视化,从而能更好地理解所形成乳液的颗粒稳定机制。