Microscale propulsion impacts a diverse array of fields, with simplistic microrobots allowing for novel innovations in microscale surgery and drug delivery. Propulsion at the microscale is constrained by physics, with time-reversal and geometric symmetries limiting available propulsion mechanisms. However, certain fluid environments and surface coatings allow for the propulsion of microparticles through externally applied magnetic fields. Presented here is a detailed analysis of microparticles propelling using spontaneous symmetry breaking, flagella surface coatings, and multi-modal actuation mechanisms. Spontaneous symmetry breaking in nonlinearly viscoelastic fluids is presented for the first time in literature, with two equal and opposit...
To achieve permanent propulsion of micro-objects in confined fluids is an elusive but challenging go...
Discovery of bio-inspired, self-propelled and externally-powered nano-/micro-motors, rotors and engi...
The remarkable efficiency and dynamics of micromachines in living organisms have inspired researcher...
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...
Significant progress has been made in the fabrication of micron and sub-micron structures whose moti...
Swimming microorganisms are a source of inspiration for small scale robots that are intended to oper...
Abstract — Swimming microrobots have the potential to be used in medical applications such as target...
To achieve permanent propulsion of micro-objects in confined fluids is an elusive but challenging go...
Remote propulsion of micro scale mobile agents has great potential as wireless manipulation tools fo...
The low Reynolds number condition presents a fundamental constraint on designing locomotive mechanis...
International audienceRemote propulsion of micro scale mobile agents has great potential as wireless...
Swimming microorganisms are a source of inspiration for small scale robots that are intended to oper...
Studying propulsion mechanisms in low Reynolds number fluid has implications for many fields, rangin...
To achieve permanent propulsion of micro-objects in confined fluids is an elusive but challenging go...
To achieve permanent propulsion of micro-objects in confined fluids is an elusive but challenging go...
Discovery of bio-inspired, self-propelled and externally-powered nano-/micro-motors, rotors and engi...
The remarkable efficiency and dynamics of micromachines in living organisms have inspired researcher...
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...
Significant progress has been made in the fabrication of micron and sub-micron structures whose moti...
Swimming microorganisms are a source of inspiration for small scale robots that are intended to oper...
Abstract — Swimming microrobots have the potential to be used in medical applications such as target...
To achieve permanent propulsion of micro-objects in confined fluids is an elusive but challenging go...
Remote propulsion of micro scale mobile agents has great potential as wireless manipulation tools fo...
The low Reynolds number condition presents a fundamental constraint on designing locomotive mechanis...
International audienceRemote propulsion of micro scale mobile agents has great potential as wireless...
Swimming microorganisms are a source of inspiration for small scale robots that are intended to oper...
Studying propulsion mechanisms in low Reynolds number fluid has implications for many fields, rangin...
To achieve permanent propulsion of micro-objects in confined fluids is an elusive but challenging go...
To achieve permanent propulsion of micro-objects in confined fluids is an elusive but challenging go...
Discovery of bio-inspired, self-propelled and externally-powered nano-/micro-motors, rotors and engi...
The remarkable efficiency and dynamics of micromachines in living organisms have inspired researcher...