4.5 Article

Stable Ultrathin-Shell Double Emulsions for Controlled Release

Journal

CHEMPHYSCHEM
Volume 17, Issue 11, Pages 1553-1556

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/cphc.201600142

Keywords

double emulsions; encapsulation; interfaces; microreactors; surface chemistry

Funding

  1. Australian Research Council through ARC Future Fellowship [FT140100726]
  2. National Science Foundation [DMR-1310266]
  3. Harvard Materials Research Science and Engineering Center [DMR-1420570]

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Double emulsions are normally considered as metastable systems and this limit in stability restricts their applications. To enhance their stability, the outer shell can be converted into a mechanically strong layer, for example, a polymeric layer, thus allowing improved performance. This conversion can be problematic for food and drug applications, as a toxic solvent is needed to dissolve the polymer in the middle phase and a high temperature is required to remove the solvent. This process can also be highly complex, for example, involving UV initiation of polymeric monomer crosslinking. In this study, we report the formation of biocompatible, water-in-oil-in-water (W/O/W) double emulsions with an ultrathin layer of fish oil. We demonstrate their application for the encapsulation and controlled release of small hydrophilic molecules. Without a trigger, the double emulsions remained stable for months, and the release of small molecules was extremely slow. In contrast, rapid release was achieved by osmolarity shock, leading to complete release within 2 h. This work demonstrates the significant potential of double emulsions, and provides new in-sights into their stability and practical applications.

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