In this work, highly monodisperse porous alginate films from bubble bursting were formed on a glass substrate at ambient temperature, by a T-shaped microfluidic junction device method using polyethylene glycol (PEG) stearate and phospholipid as precursors in some cases. Various polymer solution concentrations and feeding liquid flow rates were applied for the generation of monodisperse microbubbles, followed by the conversion of the bubbles to porous film structures on glass substrates. In order to compare the physical properties of polymeric solutions, the effects of alginate, PEG stearate (surfactant), and phospholipid concentrations on the flowability of the liquid in a T-shaped microfluidic junction device were studied. To tailor microb...
Controlling alginate gel formation by diffusion of Ca2+ ions through a filter barrier, a layer-by-la...
Cell encapsulation has been widely employed in cell therapy, characterization, and analysis, as well...
Polymeric porous particles are currently used for various applications in biotechnology, tissue engi...
In this work, a simple microfluidic junction with a T geometry and coarse (200 μm diameter) capillar...
Highly porous alginate foams were prepared via a novel route in which highly viscous alginate soluti...
Porous alginate films were prepared using a novel route in which alginate solutions of similar surfa...
Demand for low-energy food products has greatly increased in recent years due to the growing concern...
The purpose of this study was to prepare alginate (ALG) microspheres with narrow size distribution u...
[EN] This paper describes, for the first time, the use of alginate hydrogels as miniaturised microva...
This paper reports a novel microfluidic method for the production of cross-linked alginate micropart...
A microfluidic method for the in situ production of monodispersed alginate hydrogels using chaotic m...
Controlled drug delivery devices offer numerous advantages compared with conventional drugs. Among a...
Controlled porosity alginate hydrogel monoliths were synthesised by simultaneous micelle templating ...
In this work, we present a robust microfluidic platform for controlled and complete on-chip generati...
Amphiphilic block copolymers are widely used in science owing to their versatile properties. In this...
Controlling alginate gel formation by diffusion of Ca2+ ions through a filter barrier, a layer-by-la...
Cell encapsulation has been widely employed in cell therapy, characterization, and analysis, as well...
Polymeric porous particles are currently used for various applications in biotechnology, tissue engi...
In this work, a simple microfluidic junction with a T geometry and coarse (200 μm diameter) capillar...
Highly porous alginate foams were prepared via a novel route in which highly viscous alginate soluti...
Porous alginate films were prepared using a novel route in which alginate solutions of similar surfa...
Demand for low-energy food products has greatly increased in recent years due to the growing concern...
The purpose of this study was to prepare alginate (ALG) microspheres with narrow size distribution u...
[EN] This paper describes, for the first time, the use of alginate hydrogels as miniaturised microva...
This paper reports a novel microfluidic method for the production of cross-linked alginate micropart...
A microfluidic method for the in situ production of monodispersed alginate hydrogels using chaotic m...
Controlled drug delivery devices offer numerous advantages compared with conventional drugs. Among a...
Controlled porosity alginate hydrogel monoliths were synthesised by simultaneous micelle templating ...
In this work, we present a robust microfluidic platform for controlled and complete on-chip generati...
Amphiphilic block copolymers are widely used in science owing to their versatile properties. In this...
Controlling alginate gel formation by diffusion of Ca2+ ions through a filter barrier, a layer-by-la...
Cell encapsulation has been widely employed in cell therapy, characterization, and analysis, as well...
Polymeric porous particles are currently used for various applications in biotechnology, tissue engi...