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从滑顺的聚合物两性离子形成粘性液滴。

Forming Sticky Droplets from Slippery Polymer Zwitterions.

机构信息

Polymer Science and Engineering Department, University of Massachusetts Amherst, 120 Governors Drive, Amherst, MA, 01003, USA.

出版信息

Adv Mater. 2017 Oct;29(38). doi: 10.1002/adma.201702921. Epub 2017 Aug 21.

Abstract

Polymer zwitterions are generally regarded as hydrophilic and repellant or "slippery" materials. Here, a case is described in which the polymer zwitterion structure is tailored to decrease water solubility, stabilize emulsion droplets, and promote interdroplet adhesion. Harnessing the upper critical solution temperature of sulfonium- and ammonium-based polymer zwitterions in water, adhesive droplets are prepared by adding organic solvent to an aqueous polymer solution at elevated temperature, followed by agitation to induce emulsification. Droplet aggregation is observed as the mixture cools. Variation of salt concentration, temperature, polymer concentration, and polymer structure modulates these interdroplet interactions, resulting in distinct changes in emulsion stability and fluidity. Under attractive conditions, emulsions encapsulating 50-75% oil undergo gelation. By contrast, emulsions prepared under conditions where droplets are nonadhesive remain fluid and, for oil fractions exceeding 0.6, coalescence is observed. The uniquely reactive nature of the selected zwitterions allows their in situ modification and affords a route to chemically trigger deaggregation and droplet dispersion. Finally, experiments performed in a microfluidic device, in which droplets are formed under conditions that either promote or suppress adhesion, confirm the salt-responsive character of these emulsions and the persistence of adhesive interdroplet interactions under flow.

摘要

聚合物两性离子通常被认为是亲水的、排斥的或“光滑的”材料。在这里,我们描述了一种情况,其中聚合物两性离子结构经过精心设计,以降低水溶性、稳定乳液液滴并促进液滴间的粘附。利用基于硫鎓和铵的聚合物两性离子在水中的上临界溶解温度,将有机溶剂添加到升高温度的水性聚合物溶液中,然后搅拌以诱导乳化。当混合物冷却时,观察到液滴聚集。盐浓度、温度、聚合物浓度和聚合物结构的变化调节这些液滴间相互作用,导致乳液稳定性和流动性的明显变化。在有吸引力的条件下,包封 50-75%油的乳液发生凝胶化。相比之下,在液滴不粘附的条件下制备的乳液保持流体状态,并且对于超过 0.6 的油分数,观察到聚结。所选两性离子的独特反应性允许其原位修饰,并提供了一种化学触发解聚集和液滴分散的途径。最后,在微流控装置中进行的实验中,液滴在促进或抑制粘附的条件下形成,证实了这些乳液对盐的响应特性以及在流动下粘附性液滴间相互作用的持久性。

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