Water interaction with nanotextured surfaces is critical in diverse natural and technological processes. In general, water is not perfectly pure and can often contain low amounts of oily components. Here it is revealed how, contrary to wetting behavior on non-porous surfaces, a tiny amount of oil can critically influence water wettability on nanopore structures. Surfaces coated with nanoporous thin films are used to show that water droplets undergo a nanopore-triggered instantaneous meaningful spreading effect when adding parts-per-million (ppm) amounts of oil. Remarkably, minute oil fractions affect water wettability on the nanosurface more than large oil fractions. Moreover, the binary droplets exhibit contact angles even smaller than tho...
A recent design approach in creating super-repellent surfaces through slippery surface lubrication o...
Mixtures of nano- and microscopic oil droplets in water have recently been rediscovered as miniature...
Surface nanobubbles are nanoscopic gaseous domains on immersed substrates which can survive for days...
There is great interest in developing surfaces with enhanced properties for the sliding of liquid dr...
Oil?nanoporous materials interplay is ubiquitous in oil recovery from unconventional reservoirs, env...
An aqueous suspension of silica nanoparticles or nanofluid can alter the wettability of surfaces, sp...
Mixtures of nano- and microscopic oil droplets in water have recently been rediscovered as miniature...
Functional surfaces coated with nano-thin films have potential applications in many areas. In this T...
Slippery liquid-infused porous surfaces (SLIPS) are porous nanostructures impregnated with a low sur...
Slippery liquid-infused porous surfaces (SLIPS) are porous nanostructures impregnated with a low sur...
Wetting represents one of the most fundamental features of water interactions with a surface, result...
A recent design approach in creating super-repellent surfaces through slippery surface lubrication o...
Surfaces with special wettability have the potential to drastically change the way we use technology...
Wetting behavior of fluid/fluid/solid systems, largely influenced by surface properties and interact...
Surface nanobubbles are nanoscopic gaseous domains on immersed substrates which can survive for days...
A recent design approach in creating super-repellent surfaces through slippery surface lubrication o...
Mixtures of nano- and microscopic oil droplets in water have recently been rediscovered as miniature...
Surface nanobubbles are nanoscopic gaseous domains on immersed substrates which can survive for days...
There is great interest in developing surfaces with enhanced properties for the sliding of liquid dr...
Oil?nanoporous materials interplay is ubiquitous in oil recovery from unconventional reservoirs, env...
An aqueous suspension of silica nanoparticles or nanofluid can alter the wettability of surfaces, sp...
Mixtures of nano- and microscopic oil droplets in water have recently been rediscovered as miniature...
Functional surfaces coated with nano-thin films have potential applications in many areas. In this T...
Slippery liquid-infused porous surfaces (SLIPS) are porous nanostructures impregnated with a low sur...
Slippery liquid-infused porous surfaces (SLIPS) are porous nanostructures impregnated with a low sur...
Wetting represents one of the most fundamental features of water interactions with a surface, result...
A recent design approach in creating super-repellent surfaces through slippery surface lubrication o...
Surfaces with special wettability have the potential to drastically change the way we use technology...
Wetting behavior of fluid/fluid/solid systems, largely influenced by surface properties and interact...
Surface nanobubbles are nanoscopic gaseous domains on immersed substrates which can survive for days...
A recent design approach in creating super-repellent surfaces through slippery surface lubrication o...
Mixtures of nano- and microscopic oil droplets in water have recently been rediscovered as miniature...
Surface nanobubbles are nanoscopic gaseous domains on immersed substrates which can survive for days...