2019
DOI: 10.1038/s41598-019-49136-7
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Rapid and Highly Controlled Generation of Monodisperse Multiple Emulsions via a One-Step Hybrid Microfluidic Device

Abstract: Multiple Emulsions (MEs) contain a drop laden with many micro-droplets. A single-step microfluidic-based synthesis process of MEs is presented to provide a rapid and controlled generation of monodisperse MEs. The design relies on the interaction of three immiscible fluids with each other in subsequent droplet formation steps to generate monodisperse ME constructs. The design is within a microchannel consists of two compartments of cross-junction and T-junction. The high shear stress at the cross-junction creat… Show more

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Cited by 20 publications
(10 citation statements)
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“…A typical W1/O/W2 emulsion therefore consists of drops of inner water phase dispersed within oil phase which are further dispersed in outer water phase W2 ( Kanouni et al, 2003 ; Dickinson, 2011 ). Next, is a version of this, in which one can control the number of inner drops encapsulated within the large drop ( Chu et al, 2007 ; Deng et al, 2014 ; Azarmanesh et al, 2019 ). This variation can be highly useful for encapsulation of more than one type of phage i.e., in phage cocktails possible within a single large drop.…”
Section: Nanotechnology To the Rescuementioning
confidence: 99%
“…A typical W1/O/W2 emulsion therefore consists of drops of inner water phase dispersed within oil phase which are further dispersed in outer water phase W2 ( Kanouni et al, 2003 ; Dickinson, 2011 ). Next, is a version of this, in which one can control the number of inner drops encapsulated within the large drop ( Chu et al, 2007 ; Deng et al, 2014 ; Azarmanesh et al, 2019 ). This variation can be highly useful for encapsulation of more than one type of phage i.e., in phage cocktails possible within a single large drop.…”
Section: Nanotechnology To the Rescuementioning
confidence: 99%
“…17 Widespread application of high interface systems in many areas such as encapsulation, drug delivery, and interfacial catalysis demands the deployment of a simple and scalable single-step process for the formation of DEs and MEs. 15,19,20 Recently, Li et al succeeded in formulating multiple emulsions in a single-step process by using two oppositely charged, plant-derived particles. 21 The use of surfactants, polymers, or colloidal particles for emulsification involves chemical synthesis, which invariably involves huge cost and the use of sophisticated instrumentation for characterization and is associated with the generation of chemical waste.…”
Section: ■ Introductionmentioning
confidence: 99%
“…Recently, a two-step process that exploits the density difference between the dispersed-phase and continuous-phase liquids has been developed for the fabrication of the large-scale production of DEs and MEs . Widespread application of high interface systems in many areas such as encapsulation, drug delivery, and interfacial catalysis demands the deployment of a simple and scalable single-step process for the formation of DEs and MEs. ,, Recently, Li et al succeeded in formulating multiple emulsions in a single-step process by using two oppositely charged, plant-derived particles …”
Section: Introductionmentioning
confidence: 99%
“…An emulsion consists of a mixture of two immiscible fluids where one fluid is dispersed in the form of tiny droplets in another fluid acting as a continuous phase. Emulsions of lower polydispersity produce a better quality of materials in specific critical technological systems and wherein the orderly structure is highly desired (Umbanhowar et al, 2000;Maan et al, 2011;Nishimura et al, 2012;Azarmanesh et al, 2019;Kang et al, 2019). For instance, the product quality in the pharmaceutical industry is determined in terms of better drug release maintaining uniform size and stability for an extended time (Liu et al, 2020;Sugiura et al, 2002).…”
Section: Introductionmentioning
confidence: 99%