4.8 Article

Nonspherical Double Emulsions with Multiple Distinct Cores Enveloped by Ultrathin Shells

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 6, 期 2, 页码 1294-1300

出版社

AMER CHEMICAL SOC
DOI: 10.1021/am405283j

关键词

microfluidics; double emulsion; capsules; coalescence; capillary

资金

  1. KAIST Startup Fund [G04120012]
  2. HRHRP [N10130008]
  3. International Collaboration grant from the Korean Ministry of Knowledge Economy [Sunjin-2010-002]

向作者/读者索取更多资源

Microfluidics has provided means to control emulsification, enabling the production of highly monodisperse double-emulsion drops; they have served as useful templates for production of microcapsules. To provide new opportunities for double-emulsion templates, here, we report a new design of capillary microfluidic devices that create nonspherical double-emulsion drops with multiple distinct cores covered by ultrathin middle layer. To accomplish this, we parallelize capillary channels, each of which has a biphasic flow in a form of core sheath stream; this is achieved by, preferential wetting of oil to the hydrophobic wall. These core sheath streams from the parallelized channels are concurrently emulsified into continuous phase, making paired double-emulsion drops composed of multiple cores and very thin middle shell. This microfluidic approach provides high degree of controllability and flexibility on size, shape, number, and composition of double-emulsion drops. Such double-emulsion drops are useful as templates to produce microcapsules with multicompartments which can encapsulate and deliver multiple distinct components, while avoiding their cross-contamination. In addition, nonspherical envelope exerts strong capillary force, leading to preferential coalescence between innermost drops; this is potentially useful for nanoliter-scale reactions and encapsulations of the reaction products.

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