Fluid interfaces are omnipresent in nature. Engineering the fluid interface is essential to study interfacial processes for basic research and industrial applications. However, it remains challenging to precisely control the fluid interface because of its fluidity and instability. Here, we proposed a magnetic-actuated "capillary container" to realize three-dimensional (3D) fluid interface creation and programmable dynamic manipulation. By wettability modification, 3D fluid interfaces with predesigned sizes and geometries can be constructed in air, water, and oils. Multiple motion modes were realized by adjusting the container's structure and magnetic field. Besides, we demonstrated its feasibility in various fluids by performing selective f...
This article presents a magnetically actuated two-way, three-position (+, 0, −), paper-based microfl...
Controllable liquid transport on surface is expected to occur by manipulating the gradient of surfac...
This paper describes a novel strategy for fabricating the movable valve on paper-based microfluidic ...
Fluid interfaces, including gas-liquid and liquid-liquid interfaces, are ubiquitous in nature and wi...
Liquid-fluid interfaces provide a platform both for structuring liquids into complex shapes and asse...
We describe the magneto-capillary valve (MCV) technology, a flexible approach for integrated biologi...
Over decades, decentralized diagnostics continues to move towards rapid and cost-effective testing a...
We demonstrate advanced fluid manipulations using magnetic polymeric artificial cilia on the walls o...
The fabrication of multifunctional materials with tunable structure and properties requires programm...
Colloidal assembly at fluid interfaces has a great potential for the bottom-up fabrication of novel ...
Wireless and programmable manipulation of droplets is a challenge. We addressed this challenge by a ...
The ability to regulate interfacial and wetting properties is highly demanded in anti-icing, anti-bi...
We report on the design and implementation of innovative haptic interfaces based on magnetorheologic...
We report a refillable and valveless drug delivery device actuated by an external magnetic field for...
This article presents a magnetically actuated two-way, three-position (+, 0, −), paper-based microfl...
Controllable liquid transport on surface is expected to occur by manipulating the gradient of surfac...
This paper describes a novel strategy for fabricating the movable valve on paper-based microfluidic ...
Fluid interfaces, including gas-liquid and liquid-liquid interfaces, are ubiquitous in nature and wi...
Liquid-fluid interfaces provide a platform both for structuring liquids into complex shapes and asse...
We describe the magneto-capillary valve (MCV) technology, a flexible approach for integrated biologi...
Over decades, decentralized diagnostics continues to move towards rapid and cost-effective testing a...
We demonstrate advanced fluid manipulations using magnetic polymeric artificial cilia on the walls o...
The fabrication of multifunctional materials with tunable structure and properties requires programm...
Colloidal assembly at fluid interfaces has a great potential for the bottom-up fabrication of novel ...
Wireless and programmable manipulation of droplets is a challenge. We addressed this challenge by a ...
The ability to regulate interfacial and wetting properties is highly demanded in anti-icing, anti-bi...
We report on the design and implementation of innovative haptic interfaces based on magnetorheologic...
We report a refillable and valveless drug delivery device actuated by an external magnetic field for...
This article presents a magnetically actuated two-way, three-position (+, 0, −), paper-based microfl...
Controllable liquid transport on surface is expected to occur by manipulating the gradient of surfac...
This paper describes a novel strategy for fabricating the movable valve on paper-based microfluidic ...