Controllable liquid transport on surface is expected to occur by manipulating the gradient of surface tension/Laplace pressure and external stimuli, which has been intensively studied on solid or liquid interface. However, it still faces challenges of slow response rate, and uncontrollable transport speed and direction. Here, we demonstrate fast responsive and controllable liquid transport on a smart magnetic fluid/nanoarray interface, i.e., a composite interface, via modulation of an external magnetic field. The wettability of the composite interface to water instantaneously responds to gradient magnetic field due to the magnetically driven composite interface gradient roughness transition that takes place within a millisecond, which is at...
This thesis presents studies on different applications of magnetic force in microfluidic devices, in...
In nature, fluid manipulations are ubiquitous in organisms, and they are crucial for many of their v...
Here, we describe a novel technique that enables active, fast, precise and reversible control over t...
Controllable liquid transport on surface is expected to occur by manipulating the gradient of surfac...
A smart, magnetically responsive superhydrophobic surface was facilely prepared by combining spray c...
The transport of fluids at functional interfaces, driven by the external stimuli, is well establishe...
The ability to regulate interfacial and wetting properties is highly demanded in anti-icing, anti-bi...
Developing adaptive materials with geometries that change in response to external stimuli provides f...
Manipulation of droplet is of significant interest for a broad range of applications from lab on a c...
Magnetic digital microfluidics is advantageous over other existing droplet manipulation methods, whi...
Summary: There is growing interest in controlled liquid manipulation that is crucial for microfluidi...
Driving a liquid droplet with control of directional motion on a solid surface, by introducing a sur...
Solid walls become increasingly important when miniaturizing fluidic circuitry. They limit flow-rate...
Reversible switching of water-droplet adhesion on solid surfaces is of great significance for smart ...
When miniaturizing fluidic circuitry, the solid walls of the fluid channels become increasingly impo...
This thesis presents studies on different applications of magnetic force in microfluidic devices, in...
In nature, fluid manipulations are ubiquitous in organisms, and they are crucial for many of their v...
Here, we describe a novel technique that enables active, fast, precise and reversible control over t...
Controllable liquid transport on surface is expected to occur by manipulating the gradient of surfac...
A smart, magnetically responsive superhydrophobic surface was facilely prepared by combining spray c...
The transport of fluids at functional interfaces, driven by the external stimuli, is well establishe...
The ability to regulate interfacial and wetting properties is highly demanded in anti-icing, anti-bi...
Developing adaptive materials with geometries that change in response to external stimuli provides f...
Manipulation of droplet is of significant interest for a broad range of applications from lab on a c...
Magnetic digital microfluidics is advantageous over other existing droplet manipulation methods, whi...
Summary: There is growing interest in controlled liquid manipulation that is crucial for microfluidi...
Driving a liquid droplet with control of directional motion on a solid surface, by introducing a sur...
Solid walls become increasingly important when miniaturizing fluidic circuitry. They limit flow-rate...
Reversible switching of water-droplet adhesion on solid surfaces is of great significance for smart ...
When miniaturizing fluidic circuitry, the solid walls of the fluid channels become increasingly impo...
This thesis presents studies on different applications of magnetic force in microfluidic devices, in...
In nature, fluid manipulations are ubiquitous in organisms, and they are crucial for many of their v...
Here, we describe a novel technique that enables active, fast, precise and reversible control over t...