Fluid convection and mixing induced by bubble-propelled tubular microengines are characterized using passive microsphere tracers. Enhanced transport of the passive tracers by bubble-propelled micromotors, indicated by their mean squared displacement (MSD), is dramatically larger than that observed in the presence of catalytic nanowires and Janus particle motors. Bubble generation is shown to play a dominant role in the effective fluid transport observed in the presence of tubular microengines. These findings further support the potential of using bubble-propelled microengines for mixing reagents and accelerating reaction rates. The study offers useful insights toward understanding the role of the motion of multiple micromotors, bubble gener...
Although artificial micromotors with unconventional shapes are emerging as a powerful tool in variou...
To obtain insight into transport phenomena in gas/liquid/solid catalytic microsystems, a theoretical...
We demonstrate the first example of a water-driven bubble-propelled micromotor that eliminates the r...
Fluid convection and mixing induced by bubble-propelled tubular microengines are characterized using...
ABSTRACT: Fluid convection and mixing induced by bubble-propelled tubular microengines are character...
Micromotors, which can be moved at a micron scale, have special functions and can perform microscopi...
International audienceA popular method to induce synthetic propulsion at the microscale is to use th...
Bubble-propelled catalytic micromotors have recently been attracting much attention. A bubble-propul...
Precise manipulation of minute volumes of fluids is at the heart of microfluidics and opens up an ex...
Combining conventional physical vapor deposition and wet chemical etching, nanoshell catalytic motor...
Template-electrodeposited polymer/Pt microtube engines display efficient propulsion in a wide range ...
Micromotors are extensively applied in various fields, including cell separation, drug delivery and ...
Bubble-driven micromotors have attracted substantial interest due to their remarkable self-motile an...
Chemically-powered micromotors offer exciting opportunities in diverse fields, including therapeutic...
Although artificial micromotors with unconventional shapes are emerging as a powerful tool in variou...
To obtain insight into transport phenomena in gas/liquid/solid catalytic microsystems, a theoretical...
We demonstrate the first example of a water-driven bubble-propelled micromotor that eliminates the r...
Fluid convection and mixing induced by bubble-propelled tubular microengines are characterized using...
ABSTRACT: Fluid convection and mixing induced by bubble-propelled tubular microengines are character...
Micromotors, which can be moved at a micron scale, have special functions and can perform microscopi...
International audienceA popular method to induce synthetic propulsion at the microscale is to use th...
Bubble-propelled catalytic micromotors have recently been attracting much attention. A bubble-propul...
Precise manipulation of minute volumes of fluids is at the heart of microfluidics and opens up an ex...
Combining conventional physical vapor deposition and wet chemical etching, nanoshell catalytic motor...
Template-electrodeposited polymer/Pt microtube engines display efficient propulsion in a wide range ...
Micromotors are extensively applied in various fields, including cell separation, drug delivery and ...
Bubble-driven micromotors have attracted substantial interest due to their remarkable self-motile an...
Chemically-powered micromotors offer exciting opportunities in diverse fields, including therapeutic...
Although artificial micromotors with unconventional shapes are emerging as a powerful tool in variou...
To obtain insight into transport phenomena in gas/liquid/solid catalytic microsystems, a theoretical...
We demonstrate the first example of a water-driven bubble-propelled micromotor that eliminates the r...