A novel hybrid system combining microfluidic and co-axial electrospinning techniques has been used to generate different types of fibre structures with varied desirable inclusions using food grade polymers, ethyl cellulose and sodium alginate. The processing conditions in the microfluidic T-junction device, i.e. gas pressure and liquid flow rate were adjusted in order to generate near-monodisperse microbubbles which subsequently serve as a platform for particle generation. These particles exhibit micro-scale diameters and different shapes and some bubbles were incorporated into the fibrous mesh prepared by concurrent electrospinning. The fibre/particle structures obtained with different polymers via this novel method could potentially have ...
Biodegradable poly(L-lactic acid) (PLA) fibrous scaffolds were prepared by electrospinning from a PL...
Materials engineering focuses on the assembly of materials´ properties to design new products with t...
In this work, using multiple co-flows we demonstrate in-situ encapsulation of nano-particles, liquid...
A novel hybrid system combining microfluidic and co-axial electrospinning techniques has been used t...
AbstractA novel hybrid system combining microfluidic and co-axial electrospinning techniques has bee...
A novel V-junction microfluidic (VJM) device has been used to generate several types of particles fr...
Electrospinning technique has proven to be a suitable approach to produce high surface area to volum...
Electrospinning and microfluidic spinning are two fascinating techniques used in the production of m...
During the last decade, research and development in microfluidic devices have grown significantly du...
Micro and nano structures have unique properties such as large specific surface area, high porosity ...
Microfluidics is characterized by laminar flow at micro-scale dimension, high surface to volume rati...
The properties of a cell\u27s microenvironment are one of the main driving forces in cellular fate p...
Multilayered scaffolds can be designed to improve soft material applicability for regenerative medic...
EP 1541234 A UPAB: 20050712 NOVELTY - Microfluidic system comprises a circuit board with electrodes ...
This dissertation describes the fabrication of inorganic and hybrid (organic-inorganic) fibers and c...
Biodegradable poly(L-lactic acid) (PLA) fibrous scaffolds were prepared by electrospinning from a PL...
Materials engineering focuses on the assembly of materials´ properties to design new products with t...
In this work, using multiple co-flows we demonstrate in-situ encapsulation of nano-particles, liquid...
A novel hybrid system combining microfluidic and co-axial electrospinning techniques has been used t...
AbstractA novel hybrid system combining microfluidic and co-axial electrospinning techniques has bee...
A novel V-junction microfluidic (VJM) device has been used to generate several types of particles fr...
Electrospinning technique has proven to be a suitable approach to produce high surface area to volum...
Electrospinning and microfluidic spinning are two fascinating techniques used in the production of m...
During the last decade, research and development in microfluidic devices have grown significantly du...
Micro and nano structures have unique properties such as large specific surface area, high porosity ...
Microfluidics is characterized by laminar flow at micro-scale dimension, high surface to volume rati...
The properties of a cell\u27s microenvironment are one of the main driving forces in cellular fate p...
Multilayered scaffolds can be designed to improve soft material applicability for regenerative medic...
EP 1541234 A UPAB: 20050712 NOVELTY - Microfluidic system comprises a circuit board with electrodes ...
This dissertation describes the fabrication of inorganic and hybrid (organic-inorganic) fibers and c...
Biodegradable poly(L-lactic acid) (PLA) fibrous scaffolds were prepared by electrospinning from a PL...
Materials engineering focuses on the assembly of materials´ properties to design new products with t...
In this work, using multiple co-flows we demonstrate in-situ encapsulation of nano-particles, liquid...