The forced motion of superparamagnetic particles and their multibody interactions are studied in view of the application as integrated fluid drivers in microchannel systems. Previous studies on particle manipulation in open fluid volumes serve as our starting point for the analysis of particle dynamics and interplay effects in confined fluid volumes. An experimental setup is designed that offers a constant force field on all individual particles dispersed in a microchannel. Distinguishable multi-particle configurations are observed and analyzed on the basis of magnetic and hydrodynamic particle interaction mechanisms. The fluid driving performance and the efficiency of the particles are evaluated on system level by means of numerical simula...
We present techniques and methodologies for the manipulation of magnetic micro- and nanoparticles ('...
We investigate the spreading phenomena caused by the interaction between a uniform magnetic field an...
This thesis focuses on fundamental aspects of microfluidic systems and applies relevant findings to ...
The forced motion of superparamagnetic particles and their multibody interactions are studied in vie...
The trend in microfluidics and lab-on-a-chip is to miniaturize and integrate many functions in a sin...
The off-axis motion of particles actuated by axial magnetic or gravitational forces is studied in fl...
The motion of monodisperse particle ensembles in fluidic channels actuated by axial magnetic or grav...
Magnetic microparticles are often used in laboratory settings for the separation of biological mater...
The motion of magnetic microparticles (250μm diameter) in a circular microfluidic reactor with a dia...
During the last few decades, a myriad of artificially built small-scale agents became able to emulat...
We report on the magnetic actuation of superparamagnetic particles in a microfluidic channel. The fo...
The trapping response of patterned micro-magnets (PMMs) was studied based on the parameters affectin...
Magnetic actuation principles using superparamagnetic particles suspended in a fluid are studied in ...
Electromagnetically actuated microflows are generated by using ferromagnetic nanofluids containing F...
Flows of fluids and solid particles through microchannels have a very wide range of applications in ...
We present techniques and methodologies for the manipulation of magnetic micro- and nanoparticles ('...
We investigate the spreading phenomena caused by the interaction between a uniform magnetic field an...
This thesis focuses on fundamental aspects of microfluidic systems and applies relevant findings to ...
The forced motion of superparamagnetic particles and their multibody interactions are studied in vie...
The trend in microfluidics and lab-on-a-chip is to miniaturize and integrate many functions in a sin...
The off-axis motion of particles actuated by axial magnetic or gravitational forces is studied in fl...
The motion of monodisperse particle ensembles in fluidic channels actuated by axial magnetic or grav...
Magnetic microparticles are often used in laboratory settings for the separation of biological mater...
The motion of magnetic microparticles (250μm diameter) in a circular microfluidic reactor with a dia...
During the last few decades, a myriad of artificially built small-scale agents became able to emulat...
We report on the magnetic actuation of superparamagnetic particles in a microfluidic channel. The fo...
The trapping response of patterned micro-magnets (PMMs) was studied based on the parameters affectin...
Magnetic actuation principles using superparamagnetic particles suspended in a fluid are studied in ...
Electromagnetically actuated microflows are generated by using ferromagnetic nanofluids containing F...
Flows of fluids and solid particles through microchannels have a very wide range of applications in ...
We present techniques and methodologies for the manipulation of magnetic micro- and nanoparticles ('...
We investigate the spreading phenomena caused by the interaction between a uniform magnetic field an...
This thesis focuses on fundamental aspects of microfluidic systems and applies relevant findings to ...