Bubble-driven micromotors have attracted substantial interest due to their remarkable self-motile and cargo-delivering abilities in biomedical or environmental applications. Here, we developed a hollow micromotor that experiences fast self-propulsion underneath an air–liquid interface by periodic bubble growth and collapse. The collapsing of a single microbubble induces a ∼1 m·s–1 impulsive jetting flow that instantaneously pushes the micromotor forward. Unlike previously reported micromotors propelled by the recoiling of bubbles, cavitation-induced jetting further utilizes the energy stored in the bubble to propel the micromotor and thus enhances the energy conversion efficiency by 3 orders of magnitude. Four different modes of propulsion ...
ABSTRACT: Fluid convection and mixing induced by bubble-propelled tubular microengines are character...
We present experimental observations of microjets formed by cavitation microbubbles. Anunderwater el...
In previous work, we have demonstrated the use of single-holed Armoured Microbubbles (AMBs) for micr...
Bubble-driven micromotors have attracted substantial interest due to their remarkable self-motile an...
Bubble-driven micromotors have attracted substantial interest due to their remarkable self-motile an...
A number of attempts have been made to fabricate microswimmers that possibly navigate in vivo includ...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim A popular method to induce synthetic propulsion ...
Acoustic microswimmers present a great potential for microfluidic applications and targeted drug del...
The development of multifunctional and robust swimming microrobots working at the free air-liquid in...
Although artificial micromotors with unconventional shapes are emerging as a powerful tool in variou...
Micromotors, which can be moved at a micron scale, have special functions and can perform microscopi...
Bubble-propelled catalytic micromotors have recently been attracting much attention. A bubble-propul...
Fluid convection and mixing induced by bubble-propelled tubular microengines are characterized using...
International audienceThe goal of this study is to engineer 3D‐microswimmers containing a bubble tha...
ABSTRACT: Fluid convection and mixing induced by bubble-propelled tubular microengines are character...
We present experimental observations of microjets formed by cavitation microbubbles. Anunderwater el...
In previous work, we have demonstrated the use of single-holed Armoured Microbubbles (AMBs) for micr...
Bubble-driven micromotors have attracted substantial interest due to their remarkable self-motile an...
Bubble-driven micromotors have attracted substantial interest due to their remarkable self-motile an...
A number of attempts have been made to fabricate microswimmers that possibly navigate in vivo includ...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim A popular method to induce synthetic propulsion ...
Acoustic microswimmers present a great potential for microfluidic applications and targeted drug del...
The development of multifunctional and robust swimming microrobots working at the free air-liquid in...
Although artificial micromotors with unconventional shapes are emerging as a powerful tool in variou...
Micromotors, which can be moved at a micron scale, have special functions and can perform microscopi...
Bubble-propelled catalytic micromotors have recently been attracting much attention. A bubble-propul...
Fluid convection and mixing induced by bubble-propelled tubular microengines are characterized using...
International audienceThe goal of this study is to engineer 3D‐microswimmers containing a bubble tha...
ABSTRACT: Fluid convection and mixing induced by bubble-propelled tubular microengines are character...
We present experimental observations of microjets formed by cavitation microbubbles. Anunderwater el...
In previous work, we have demonstrated the use of single-holed Armoured Microbubbles (AMBs) for micr...