Selected adsorption efficiency of a molecule in solution in a microchannel is strongly influenced by the convective/diffusive mass transport phenomena that supply the target molecule to the adsorption surface. In a standard microchannel with a rectangular cross section, laminar flow regime limits the fluid mixing, thus suggesting that mass transport conditions can be improved by the introduction of herringbone-like structures. Tuning of these geometrical patterns increases the concentration gradient of the target molecule at the adsorption surface. A computational fluid dynamic (CFD) study was performed to evaluate the relation between the geometrical herringbone patterns and the concentration gradient improvement in a 14 mm long microchann...
In this thesis we study the flow of concentrated emulsions in microfluidic channels with herringbone...
A two-dimensional numerical simulation of flow in patterned microchannel with alternate layers of di...
One of the most promising way to exploit microfluidic systems is as microreactors. A microreactor ca...
Selected adsorption efficiency of a molecule in solution in a microchannel is strongly influenced by...
Analyte mixing and delivery to a functionalized sensor surface are important to realize several adva...
The high liquid based specific interfacial area, up to ~20,000 m2/m3, of falling film microreactors ...
Microfluidic platforms offer a variety of advantages including improved heat transfer, low working v...
Understanding the flow fields at the micro-scale is key to developing methods of success-fully mixin...
For microfluidic systems, interfacial phenomena in micro-reactors are of great importance because th...
Increasing interest in chemotaxis or cell migration in the presence of concentration gradient of cer...
For microfluidic systems, interfacial phenomena in micro-reactors are of great importance because th...
Mass transport limitations and surface interactions are important phenomena in microfluidic devices....
The use of microfluidic devices has become increasingly popular in the study of chemotaxis due to th...
We report on a microfluidic device that generates separate solution environments in macroscopic volu...
This research project was part of the microfluidic program in the CRC for Microtechnology, Australia...
In this thesis we study the flow of concentrated emulsions in microfluidic channels with herringbone...
A two-dimensional numerical simulation of flow in patterned microchannel with alternate layers of di...
One of the most promising way to exploit microfluidic systems is as microreactors. A microreactor ca...
Selected adsorption efficiency of a molecule in solution in a microchannel is strongly influenced by...
Analyte mixing and delivery to a functionalized sensor surface are important to realize several adva...
The high liquid based specific interfacial area, up to ~20,000 m2/m3, of falling film microreactors ...
Microfluidic platforms offer a variety of advantages including improved heat transfer, low working v...
Understanding the flow fields at the micro-scale is key to developing methods of success-fully mixin...
For microfluidic systems, interfacial phenomena in micro-reactors are of great importance because th...
Increasing interest in chemotaxis or cell migration in the presence of concentration gradient of cer...
For microfluidic systems, interfacial phenomena in micro-reactors are of great importance because th...
Mass transport limitations and surface interactions are important phenomena in microfluidic devices....
The use of microfluidic devices has become increasingly popular in the study of chemotaxis due to th...
We report on a microfluidic device that generates separate solution environments in macroscopic volu...
This research project was part of the microfluidic program in the CRC for Microtechnology, Australia...
In this thesis we study the flow of concentrated emulsions in microfluidic channels with herringbone...
A two-dimensional numerical simulation of flow in patterned microchannel with alternate layers of di...
One of the most promising way to exploit microfluidic systems is as microreactors. A microreactor ca...