Ge Lingling, Shao Wanqing, Lu Shuhui, Guo Rong
School of Chemistry and Chemical Engineering, Yangzhou University, Jiangsu Province 225002, People's Republic of China.
Soft Matter. 2014 Jul 7;10(25):4498-505. doi: 10.1039/c4sm00456f.
Droplet topology of a Janus emulsion in a vegetable oil (VO)/silicone oil (SO)/Tween 80 aqueous solution (Aq) system prepared in a one-step high energy mixing was investigated, mainly by image observation. Quantitative information of the topology was analyzed referring to the curvature of VO/SO interface, the location of contact plane, and the volume ratio of VO/SO within individual droplets. The results show that the "stable Janus emulsion" region in the phase map enlarges with surfactant concentration. The average volume ratio of two oil lobes within an individual Janus droplet agrees with the emulsion composition in the "stable Janus emulsion" region, which means that the droplet topology can be controlled by the emulsion preparation process within realistic limits. The volume ratio of VO/SO within individual droplet ranges from about 0.54 to 0.17 in the VO/SO/3 wt% Tween 80(Aq) system, beyond which separate VO and SO droplets are observed. The topology of a Janus droplet is found to be determined by both the contact angle of three liquids in the contact line and the location of the contact plane. The contact angle of the oil cap is determined by the interfacial tension referring to the local equilibrium. The location of the contact plane is the dominant factor determining the volume ratio of two oil lobes. Composition change in the emulsion results in the corresponding tune of the location of contact plane and subsequently, the volume ratio of two oils within Janus droplets.
研究了通过一步高能混合制备的植物油(VO)/硅油(SO)/吐温80水溶液(Aq)体系中Janus乳液的液滴拓扑结构,主要采用图像观察法。参照VO/SO界面的曲率、接触平面的位置以及单个液滴内VO/SO的体积比,对拓扑结构的定量信息进行了分析。结果表明,相图中的“稳定Janus乳液”区域随表面活性剂浓度的增加而扩大。单个Janus液滴内两个油瓣的平均体积比与“稳定Janus乳液”区域内的乳液组成一致,这意味着在实际范围内,液滴拓扑结构可通过乳液制备过程进行控制。在VO/SO/3 wt%吐温80(Aq)体系中,单个液滴内VO/SO的体积比范围约为0.54至0.17,超过该范围则观察到分离的VO和SO液滴。发现Janus液滴的拓扑结构由接触线上三种液体的接触角和接触平面的位置共同决定。油帽的接触角由局部平衡下的界面张力决定。接触平面的位置是决定两个油瓣体积比的主导因素。乳液组成的变化导致接触平面位置的相应调整,进而导致Janus液滴内两种油的体积比发生变化。