A major challenge that prevents the miniaturization of mechanically actuated systems is the lack of suitable methods that permit the efficient transfer of power to small scales. Acoustic energy holds great potential, as it is wireless, penetrates deep into biological tissues, and the mechanical vibrations can be directly converted into directional forces. Recently, active acoustic surfaces are developed that consist of 2D arrays of microcavities holding microbubbles that can be excited with an external acoustic field. At resonance, the surfaces give rise to acoustic streaming and thus provide a highly directional propulsive force. Here, this study advances these wireless surface actuators by studying their force output as the size of the bu...
Acoustic micropropulsors present great potential for microfluidic applications. The propulsion is ba...
Bubble-powered acoustic microsystems span a plethora of applications that range from lab-on-chip dia...
Endoscopy enables a number of important minimally invasive medical procedures. Current commercial fl...
A major challenge that prevents the miniaturization of mechanically actuated systems is the lack of ...
A major challenge that prevents the miniaturization of mechanically actuated systems is the lack of ...
Miniaturization calls for micro-actuators that can be powered wirelessly and addressed individually....
Miniaturized actuators are a key element for the manipulation and automation at small scales. Here, ...
A number of attempts have been made to fabricate microswimmers that possibly navigate in vivo includ...
Acoustic microswimmers present a great potential for microfluidic applications and targeted drug del...
International audienceThe goal of this study is to engineer 3D‐microswimmers containing a bubble tha...
Recent advances in contactless micromanipulation strategies have revolutionized prospects of robotic...
Microrobots can operate in tiny areas that traditional bulk robots cannot reach. The combination of ...
Acoustic micropropulsors present great potential for microfluidic applications. The propulsion is ba...
Bubble-powered acoustic microsystems span a plethora of applications that range from lab-on-chip dia...
Endoscopy enables a number of important minimally invasive medical procedures. Current commercial fl...
A major challenge that prevents the miniaturization of mechanically actuated systems is the lack of ...
A major challenge that prevents the miniaturization of mechanically actuated systems is the lack of ...
Miniaturization calls for micro-actuators that can be powered wirelessly and addressed individually....
Miniaturized actuators are a key element for the manipulation and automation at small scales. Here, ...
A number of attempts have been made to fabricate microswimmers that possibly navigate in vivo includ...
Acoustic microswimmers present a great potential for microfluidic applications and targeted drug del...
International audienceThe goal of this study is to engineer 3D‐microswimmers containing a bubble tha...
Recent advances in contactless micromanipulation strategies have revolutionized prospects of robotic...
Microrobots can operate in tiny areas that traditional bulk robots cannot reach. The combination of ...
Acoustic micropropulsors present great potential for microfluidic applications. The propulsion is ba...
Bubble-powered acoustic microsystems span a plethora of applications that range from lab-on-chip dia...
Endoscopy enables a number of important minimally invasive medical procedures. Current commercial fl...