Electrowetting technique is an actuation method for manipulating position and velocity of fluids in the microchannels. By combining electrowetting technique and a freestanding mode triboelectric nanogenerator (TENG), we have designed a self-powered microfluidic transport system. In this system, a mini vehicle is fabricated by using four droplets to carry a pallet (6 mm × 8 mm), and it can transport some tiny object on the track electrodes under the drive of TENG. The motion of TENG can provide both driving power and control signal for the mini vehicle. The maximum load for this mini vehicle is 500 mg, and its highest controllable velocity can reach 1 m/s. Freestanding TENG has shown excellent capability to manipulate microfluid. Under the d...
This paper reports a novel technique for droplet transportation using dynamic surface topography. Dr...
In the world of (micro-)conveying systems, the pathway is mostly fixed, for example by the usage of ...
Directional and controllable transportation of microdroplets is critical for emerging micro- and nan...
In this research I developed a new form of microfluidic transport technique that exploits electrokin...
We report a finger-powered digital microfluidic device based on the electrophoretic transport of dis...
Precisely moving small amounts of fluid is vital to the function of many new technologies, including...
Electrowetting-on-dielectric (EWOD) is a well-known method for micro-droplet manipulation. In such E...
Here, we introduce the novel concept of a "soft shuttle" for transportation, manipulation,...
Microsensors and micromachines that are capable of self-propulsion through fluids could revolutioniz...
We evaluate the feasibility of manipulating droplets in two dimensions by exploiting Coulombic force...
We evaluate the feasibility of manipulating droplets in two dimensions by exploiting Coulombic force...
International audienceRemote propulsion of micro scale mobile agents has great potential as wireless...
Electrowetting-on-dielectric (EWOD) is a versatile method for microdroplet manipulation, and is curr...
Electrowetting-on-dielectric is a well-known method for micro-droplet manipulation. In systems using...
Portable microfluidic devices are promising for point-of-care (POC) diagnosis and bio- and environme...
This paper reports a novel technique for droplet transportation using dynamic surface topography. Dr...
In the world of (micro-)conveying systems, the pathway is mostly fixed, for example by the usage of ...
Directional and controllable transportation of microdroplets is critical for emerging micro- and nan...
In this research I developed a new form of microfluidic transport technique that exploits electrokin...
We report a finger-powered digital microfluidic device based on the electrophoretic transport of dis...
Precisely moving small amounts of fluid is vital to the function of many new technologies, including...
Electrowetting-on-dielectric (EWOD) is a well-known method for micro-droplet manipulation. In such E...
Here, we introduce the novel concept of a "soft shuttle" for transportation, manipulation,...
Microsensors and micromachines that are capable of self-propulsion through fluids could revolutioniz...
We evaluate the feasibility of manipulating droplets in two dimensions by exploiting Coulombic force...
We evaluate the feasibility of manipulating droplets in two dimensions by exploiting Coulombic force...
International audienceRemote propulsion of micro scale mobile agents has great potential as wireless...
Electrowetting-on-dielectric (EWOD) is a versatile method for microdroplet manipulation, and is curr...
Electrowetting-on-dielectric is a well-known method for micro-droplet manipulation. In systems using...
Portable microfluidic devices are promising for point-of-care (POC) diagnosis and bio- and environme...
This paper reports a novel technique for droplet transportation using dynamic surface topography. Dr...
In the world of (micro-)conveying systems, the pathway is mostly fixed, for example by the usage of ...
Directional and controllable transportation of microdroplets is critical for emerging micro- and nan...