Liquid infused surfaces with partially wetting lubricants have recently been exploited for numerous intriguing applications, such as for droplet manipulation, droplet collection and spontaneous motion. When partially wetting lubricants are used, the pinning force is a key factor that can strongly affect droplet mobility. Here, we derive an analytical prediction for contact angle hysteresis in the limit where the meniscus size is much smaller than the droplet, and numerically study how it is controlled by the solid fraction, the lubricant wetting angles, and the various fluid surface tensions. We further relate the contact angle hysteresis and the pinning force experienced by a droplet on a liquid infused surface, and our predictions for the...
Understanding the role of pinning force in droplet dynamic wetting is of critical importance for sur...
Non-wetting surfaces containing micro/nanotextures impregnated with lubricating liquids have recentl...
The introduction of lubricant between fluid and substrate endows the Liquid-Infused Slippery Surface...
Liquid infused surfaces with partially wetting lubricants have recently been exploited for numerous ...
We theoretically investigate the apparent contact angle and contact angle hysteresis of a droplet pl...
We employ a free energy lattice Boltzmann method to study the dynamics of a ternary fluid system con...
We theoretically investigate the apparent contact angle and contact angle hysteresis of a droplet pl...
We theoretically investigate the apparent contact angle of drops on liquid infused surfaces as a fun...
We employ a free-energy lattice-Boltzmann method to study the dynamics of a ternary fluid system con...
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 ...
We numerically study two-component capillary bridges formed when a liquid droplet is placed in betwe...
The contact angle of a fluid droplet on an heterogeneous surface is analyzed using the statistical d...
We demonstrate the transport and positioning of water droplets on macro-patterned lubricant-impregna...
Liquid-infused surfaces (LIS), formed of a nano- or micro-structured porous material that is impregn...
Understanding the role of pinning force in droplet dynamic wetting is of critical importance for sur...
Non-wetting surfaces containing micro/nanotextures impregnated with lubricating liquids have recentl...
The introduction of lubricant between fluid and substrate endows the Liquid-Infused Slippery Surface...
Liquid infused surfaces with partially wetting lubricants have recently been exploited for numerous ...
We theoretically investigate the apparent contact angle and contact angle hysteresis of a droplet pl...
We employ a free energy lattice Boltzmann method to study the dynamics of a ternary fluid system con...
We theoretically investigate the apparent contact angle and contact angle hysteresis of a droplet pl...
We theoretically investigate the apparent contact angle of drops on liquid infused surfaces as a fun...
We employ a free-energy lattice-Boltzmann method to study the dynamics of a ternary fluid system con...
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 ...
We numerically study two-component capillary bridges formed when a liquid droplet is placed in betwe...
The contact angle of a fluid droplet on an heterogeneous surface is analyzed using the statistical d...
We demonstrate the transport and positioning of water droplets on macro-patterned lubricant-impregna...
Liquid-infused surfaces (LIS), formed of a nano- or micro-structured porous material that is impregn...
Understanding the role of pinning force in droplet dynamic wetting is of critical importance for sur...
Non-wetting surfaces containing micro/nanotextures impregnated with lubricating liquids have recentl...
The introduction of lubricant between fluid and substrate endows the Liquid-Infused Slippery Surface...