Studying propulsion mechanisms in low Reynolds number fluid has implications for many fields, ranging from the biology of motile microorganisms and the physics of active matter to micromixing in catalysis and micro- and nanorobotics. The propulsion of magnetic micropropellers can be characterized by a dimensionless speed, which solely depends on the propeller geometry for a given axis of rotation. However, this dependence has so far been only investigated for helical propeller shapes, which were assumed to be optimal. In order to explore a larger variety of shapes, we experimentally studied the propulsion properties of randomly shaped magnetic micropropellers. Surprisingly, we found that their dimensionless speeds are high on average, compa...
The field of synthetic microswimmers, micro-robots moving in aqueous environments, has evolved signi...
Microscale propulsion impacts a diverse array of fields, with simplistic microrobots allowing for no...
Nature consists of numerous solutions to overcome challenges in designing artificial systems. Variou...
Studying propulsion mechanisms in low Reynolds number fluid has implications for many fields, rangin...
In nature, many bacteria swim by rotating their helical flagella. A particularly promising class of ...
Magnetic microswimmers are promising devices for biomedical and environmental applications. Bacteriu...
Magnetic microswimmers are promising devices for biomedical and environmental applications. Bacteriu...
The field of synthetic microswimmers, micro-robots moving in aqueous environments, has evolved signi...
Locomotion in fluids at the nanoscale is dominated by viscous drag. One efficient propulsion scheme ...
The field of synthetic microswimmers, micro-robots moving in aqueous environments, has evolved signi...
The field of synthetic microswimmers, micro-robots moving in aqueous environments, has evolved signi...
The field of synthetic microswimmers, micro-robots moving in aqueous environments, has evolved signi...
Untethered, magnetically driven microrobots have great potential in practical applications such as m...
International audienceSynthetic microswimmers mimicking biological movements at the microscale have ...
Micron scale robots going inside our body and curing various ailments is a technolog¬ical dream that...
The field of synthetic microswimmers, micro-robots moving in aqueous environments, has evolved signi...
Microscale propulsion impacts a diverse array of fields, with simplistic microrobots allowing for no...
Nature consists of numerous solutions to overcome challenges in designing artificial systems. Variou...
Studying propulsion mechanisms in low Reynolds number fluid has implications for many fields, rangin...
In nature, many bacteria swim by rotating their helical flagella. A particularly promising class of ...
Magnetic microswimmers are promising devices for biomedical and environmental applications. Bacteriu...
Magnetic microswimmers are promising devices for biomedical and environmental applications. Bacteriu...
The field of synthetic microswimmers, micro-robots moving in aqueous environments, has evolved signi...
Locomotion in fluids at the nanoscale is dominated by viscous drag. One efficient propulsion scheme ...
The field of synthetic microswimmers, micro-robots moving in aqueous environments, has evolved signi...
The field of synthetic microswimmers, micro-robots moving in aqueous environments, has evolved signi...
The field of synthetic microswimmers, micro-robots moving in aqueous environments, has evolved signi...
Untethered, magnetically driven microrobots have great potential in practical applications such as m...
International audienceSynthetic microswimmers mimicking biological movements at the microscale have ...
Micron scale robots going inside our body and curing various ailments is a technolog¬ical dream that...
The field of synthetic microswimmers, micro-robots moving in aqueous environments, has evolved signi...
Microscale propulsion impacts a diverse array of fields, with simplistic microrobots allowing for no...
Nature consists of numerous solutions to overcome challenges in designing artificial systems. Variou...