We demonstrate the transport and positioning of water droplets on macro-patterned lubricant-impregnated surfaces. The macro-patterning produces menisci features in the impregnating liquid layer which interact with a droplet via a capillary mechanism similar to the Cheerios effect. These interactions control the droplet motion and positioning on an otherwise completely slippery surface. We present experimental results using a V-shape channel geometry as a model system. The interaction between deformations on the lubricant layer induced by the droplet and the underlying V-shape geometry leads to both local and global equilibrium positions for the droplet within the channel. We present a mathematical model to quantify the transition from local...
Control over the interaction of droplets with solid surfaces is commonplace in nature. Famous exampl...
Manipulation of drop motion has attracted considerable attention recently as it is pertinent to indu...
Slippery lubricant-infused surfaces are composite materials consisting of a solid matrix permanently...
We demonstrate the transport and positioning of water droplets on macro-patterned lubricant-impregna...
We demonstrate the transport and positioning of water droplets on macro-patterned lubricant-impregna...
Droplet mobility on surfaces is often hampered by the pinning of the droplet’s contact line. Externa...
A significant limitation for droplet mobility on solid surfaces is to overcome the inherent pinning ...
Non-wetting surfaces containing micro/nanotextures impregnated with lubricating liquids have recentl...
Droplets on slippery surfaces such as Slippery Liquid Infused Porous Surfaces or Liquid - Impregnate...
The transport of small amounts of liquids on solid surfaces is fundamental for microfluidics applica...
We show how anisotropic, grooved features facilitate the trapping and directed transport of droplets...
We employ a free-energy lattice-Boltzmann method to study the dynamics of a ternary fluid system con...
We employ a free-energy lattice-Boltzmann method to study the dynamics of a ternary fluid system con...
The current paradigm of self-propelled motion of liquid droplets on surfaces with chemical or topogr...
Control over the interaction of droplets with solid surfaces is commonplace in nature. Famous exampl...
Control over the interaction of droplets with solid surfaces is commonplace in nature. Famous exampl...
Manipulation of drop motion has attracted considerable attention recently as it is pertinent to indu...
Slippery lubricant-infused surfaces are composite materials consisting of a solid matrix permanently...
We demonstrate the transport and positioning of water droplets on macro-patterned lubricant-impregna...
We demonstrate the transport and positioning of water droplets on macro-patterned lubricant-impregna...
Droplet mobility on surfaces is often hampered by the pinning of the droplet’s contact line. Externa...
A significant limitation for droplet mobility on solid surfaces is to overcome the inherent pinning ...
Non-wetting surfaces containing micro/nanotextures impregnated with lubricating liquids have recentl...
Droplets on slippery surfaces such as Slippery Liquid Infused Porous Surfaces or Liquid - Impregnate...
The transport of small amounts of liquids on solid surfaces is fundamental for microfluidics applica...
We show how anisotropic, grooved features facilitate the trapping and directed transport of droplets...
We employ a free-energy lattice-Boltzmann method to study the dynamics of a ternary fluid system con...
We employ a free-energy lattice-Boltzmann method to study the dynamics of a ternary fluid system con...
The current paradigm of self-propelled motion of liquid droplets on surfaces with chemical or topogr...
Control over the interaction of droplets with solid surfaces is commonplace in nature. Famous exampl...
Control over the interaction of droplets with solid surfaces is commonplace in nature. Famous exampl...
Manipulation of drop motion has attracted considerable attention recently as it is pertinent to indu...
Slippery lubricant-infused surfaces are composite materials consisting of a solid matrix permanently...