Key Laboratory of Colloid and Interface Chemistry, Ministry of Education, Shandong University, Jinan 250100, China.
Langmuir. 2022 Apr 19;38(15):4713-4721. doi: 10.1021/acs.langmuir.2c00271. Epub 2022 Apr 6.
Water-in-water (W/W) emulsions are of interest for various applications due to their inherent biocompatibility, ultralow interfacial tensions, and large interface thickness. However, it is still challenging to prepare stable W/W emulsions with tailored phase architectures compared to oil-in-water (O/W) and water-in-oil (W/O) emulsions. Here, we report a multilayer-stabilized W/W emulsion composed of poly(ethylene glycol)/dextran in the presence of DNA strands. The W/W emulsions present onion-ring-like structures, which are interpreted by a nanofluid film model. Emulsion behavior, e.g., stability, interface tension, etc., can be controlled by the type of DNA (single or double strands), DNA concentration, and volume fraction of dispersed phase. Our findings could broaden the preparation of novel emulsions for potential applications in emulsion polymerization, new media of homogeneous catalysis, and DNA transportation of water-in-water media.
水包水 (W/W) 乳液由于其固有生物相容性、超低界面张力和较大的界面厚度而受到各种应用的关注。然而,与油包水 (O/W) 和水包油 (W/O) 乳液相比,制备具有定制相结构的稳定 W/W 乳液仍然具有挑战性。在这里,我们报告了一种由聚乙二醇/葡聚糖在 DNA 链存在下组成的多层稳定 W/W 乳液。W/W 乳液呈现洋葱环样结构,通过纳米流体膜模型进行解释。乳液行为,例如稳定性、界面张力等,可以通过 DNA 的类型(单链或双链)、DNA 浓度和分散相的体积分数来控制。我们的发现可以拓宽新型乳液的制备,为乳液聚合、均相催化的新介质以及水包水介质中的 DNA 运输等潜在应用提供可能。