Hypothesis Double emulsions with many monodispersed internal droplets are required for the fabrication of multicompartment microcapsules and tissue-like synthetic materials. These double emulsions can also help to optically resolve different coalescence mechanisms contributing to double emulsion destabilization. Up to date microfluidic double emulsions are limited to either core-shell droplets or droplets with eight or less inner droplets. By applying a two-step jet break-up within one setup, double emulsion droplets filled with up to several hundred monodispersed inner droplets can be achieved. ExperimentsModular interconnected CNC-milled Lego-inspired blocks were used to create two separated droplet break-up points within coaxial glass ca...
A three-phase axisymmetric numerical model based on Volume of Fluid–Continuum Surface Force (VOF–CSF...
AbstractA three-phase axisymmetric numerical model based on Volume of Fluid–Continuum Surface Force ...
Hypothesis - Predicting formation mode of double emulsion drops in microfluidic emulsification is cr...
Hypothesis Double emulsions with many monodispersed internal droplets are required for the fabricati...
Hypothesis Double emulsions with many monodispersed internal droplets are required for the fabricati...
Single-step generation of monodisperse multi-core double emulsion drops in three-phase glass capilla...
Single-step generation of monodisperse multi-core double emulsion drops in three-phase glass capilla...
A three-phase axisymmetric numerical model based on Volume of Fluid–Continuum Surface Force (VOF–CSF...
Microfluidics has provided means to control emulsification, enabling the production of highly monodi...
Microfluidics has provided means to control emulsification, enabling the production of highly monodi...
Microfluidics has provided means to control emulsification, enabling the production of highly monodi...
Microfluidics has provided means to control emulsification, enabling the production of highly monodi...
We successfully encapsulate two, three, and four different inner drops inside double emulsions by me...
A three-phase axisymmetric numerical model based on Volume of Fluid–Continuum Surface Force (VOF–CSF...
AbstractA three-phase axisymmetric numerical model based on Volume of Fluid–Continuum Surface Force ...
A three-phase axisymmetric numerical model based on Volume of Fluid–Continuum Surface Force (VOF–CSF...
AbstractA three-phase axisymmetric numerical model based on Volume of Fluid–Continuum Surface Force ...
Hypothesis - Predicting formation mode of double emulsion drops in microfluidic emulsification is cr...
Hypothesis Double emulsions with many monodispersed internal droplets are required for the fabricati...
Hypothesis Double emulsions with many monodispersed internal droplets are required for the fabricati...
Single-step generation of monodisperse multi-core double emulsion drops in three-phase glass capilla...
Single-step generation of monodisperse multi-core double emulsion drops in three-phase glass capilla...
A three-phase axisymmetric numerical model based on Volume of Fluid–Continuum Surface Force (VOF–CSF...
Microfluidics has provided means to control emulsification, enabling the production of highly monodi...
Microfluidics has provided means to control emulsification, enabling the production of highly monodi...
Microfluidics has provided means to control emulsification, enabling the production of highly monodi...
Microfluidics has provided means to control emulsification, enabling the production of highly monodi...
We successfully encapsulate two, three, and four different inner drops inside double emulsions by me...
A three-phase axisymmetric numerical model based on Volume of Fluid–Continuum Surface Force (VOF–CSF...
AbstractA three-phase axisymmetric numerical model based on Volume of Fluid–Continuum Surface Force ...
A three-phase axisymmetric numerical model based on Volume of Fluid–Continuum Surface Force (VOF–CSF...
AbstractA three-phase axisymmetric numerical model based on Volume of Fluid–Continuum Surface Force ...
Hypothesis - Predicting formation mode of double emulsion drops in microfluidic emulsification is cr...