Javascript must be enabled to continue!
Generation of micro-sized PDMS particles by a flow focusing technique for biomicrofluidics applications
View through CrossRef
Polydimethylsiloxane (PDMS), due to its remarkable properties, is one of the most widely used polymers in many industrial and medical applications. In this work, a technique based on a flow focusing technique is used to produce PDMS spherical particles with sizes of a few microns. PDMS precursor is injected through a hypodermic needle to form a film/reservoir over the needle's outer surface. This film flows towards the needle tip until a liquid ligament is steadily ejected thanks to the action of a coflowing viscous liquid stream. The outcome is a capillary jet which breaks up into PDMS precursor droplets due to the growth of capillary waves producing a micrometer emulsion. The PDMS liquid droplets in the solution are thermally cured into solid microparticles. The size distribution of the particles is analyzed before and after curing, showing an acceptable degree of monodispersity. The PDMS liquid droplets suffer shrinkage while curing. These microparticles can be used in very varied technological fields, such as biomedicine, biotechnology, pharmacy, and industrial engineering.
Title: Generation of micro-sized PDMS particles by a flow focusing technique for biomicrofluidics applications
Description:
Polydimethylsiloxane (PDMS), due to its remarkable properties, is one of the most widely used polymers in many industrial and medical applications.
In this work, a technique based on a flow focusing technique is used to produce PDMS spherical particles with sizes of a few microns.
PDMS precursor is injected through a hypodermic needle to form a film/reservoir over the needle's outer surface.
This film flows towards the needle tip until a liquid ligament is steadily ejected thanks to the action of a coflowing viscous liquid stream.
The outcome is a capillary jet which breaks up into PDMS precursor droplets due to the growth of capillary waves producing a micrometer emulsion.
The PDMS liquid droplets in the solution are thermally cured into solid microparticles.
The size distribution of the particles is analyzed before and after curing, showing an acceptable degree of monodispersity.
The PDMS liquid droplets suffer shrinkage while curing.
These microparticles can be used in very varied technological fields, such as biomedicine, biotechnology, pharmacy, and industrial engineering.
Related Results
Micromechanical characterization of small volumes by means of nanoindentation
Micromechanical characterization of small volumes by means of nanoindentation
Mechanical characterization of micro-volume systems, as thin films or micro-sized phases embedded in multiphase materials, has attracted special interest in the last decades since...
Constraining the origins of terrestrial stratospheric solid aerosols over the 1981-2020 period
Constraining the origins of terrestrial stratospheric solid aerosols over the 1981-2020 period
MotivationThe injection of materials into the Earth's atmosphere has both a natural and an anthropogenic component. Natural solid aerosols that reach the stratosphere can come from...
Abrasive Jet Micro-Machining of Polymeric Materials
Abrasive Jet Micro-Machining of Polymeric Materials
In the abrasive jet micro-machining (AJM) process, a jet of small particles is directed through an erosion resistant mask opening so that micro-sized features (i.e., micro-channels...
Abrasive Jet Micro-Machining of Polymeric Materials
Abrasive Jet Micro-Machining of Polymeric Materials
In the abrasive jet micro-machining (AJM) process, a jet of small particles is directed through an erosion resistant mask opening so that micro-sized features (i.e., micro-channels...
Methods for the collection and characterization of airborne particles in
the textile industry
Methods for the collection and characterization of airborne particles in
the textile industry
Airborne particulate matter is one of the main air pollutants. Their
impact on mortality, and the occurrence of pulmonary and cardiovascular
...
Wearable porous PDMS layer of high moisture permeability for skin trouble reduction
Wearable porous PDMS layer of high moisture permeability for skin trouble reduction
AbstractThe present research proposes the present porous polydimethylsiloxane (PDMS) layer for the skin trouble reduced daily life skin attachable devices. The present research pro...
Multiphase Flow Metering:An Evaluation of Discharge Coefficients
Multiphase Flow Metering:An Evaluation of Discharge Coefficients
Abstract
The orifice discharge coefficient (CD) is the constant required to correct theoretical flow rate to actual flow rate. It is known that single phase orifi...
Prediction of micro milling force and surface roughness considering size-dependent vibration of micro-end mill
Prediction of micro milling force and surface roughness considering size-dependent vibration of micro-end mill
Abstract
When the characteristic structure size of the component is at the micron level, the internal crystal grains, grain boundaries and pore defects of the component mat...

