Drying sessile droplets is a promising route to transform colloidal dispersions into surface coatings, which are widely used in material design and biochemical detection. However, directing the assembly of the particles within drying droplets and achieving surface patterns beyond the well-known coffee-ring formation remain a challenge. Here, we present a new principle of directing the assembly of nonmagnetic colloidal particles dispersed in a magnetic fluid and generating unusual surface patterns. We use the ability of ferrofluids to change phases with the application of magnetic fields to program the assembly of nonmagnetic microparticles present in drying sessile droplets. We show that in the absence of external magnetic field, the superp...
Ferrofluids exhibit a unique combination of liquid properties and strong magnetic response, which le...
Superparamagnetism exists only in nanocrystals, and to endow micro/macro-materials with superparamag...
Self-assembly of nanoparticles at fluid-fluid interfaces is a promising route to fabricate functiona...
Drying sessile droplets is a promising route to transform colloidal dispersions into surface coating...
The evaporation of colloidal droplets is currently a topic of intensive research due to its wide ran...
Magnetic droplets, consisting of magnetic nanoparticles in a carrier fluid, are of high interest due...
Evaporation of sessile droplets is a way to organize suspended particles and create surface coating....
The evaporation of colloids droplets is a naturally abundant phenomenon, often used as a way to crea...
Among the large variety of microfluidic platforms, surface devices are a world apart. Electrowetting...
In this study, the evaporation characteristics and drying patterns of various sessile ferrofluid dro...
Magnetic digital microfluidics is advantageous over other existing droplet manipulation methods, whi...
The assembly and jamming of magnetic nanoparticles (NPs) at liquid-liquid interfaces is a versatile ...
Wireless and programmable manipulation of droplets is a challenge. We addressed this challenge by a ...
Solid ferromagnetic materials are rigid in shape and cannot be reconfigured. Ferrofluids, although r...
The evaporation of colloidal droplets is currently a topic of intensive research due to its wide ran...
Ferrofluids exhibit a unique combination of liquid properties and strong magnetic response, which le...
Superparamagnetism exists only in nanocrystals, and to endow micro/macro-materials with superparamag...
Self-assembly of nanoparticles at fluid-fluid interfaces is a promising route to fabricate functiona...
Drying sessile droplets is a promising route to transform colloidal dispersions into surface coating...
The evaporation of colloidal droplets is currently a topic of intensive research due to its wide ran...
Magnetic droplets, consisting of magnetic nanoparticles in a carrier fluid, are of high interest due...
Evaporation of sessile droplets is a way to organize suspended particles and create surface coating....
The evaporation of colloids droplets is a naturally abundant phenomenon, often used as a way to crea...
Among the large variety of microfluidic platforms, surface devices are a world apart. Electrowetting...
In this study, the evaporation characteristics and drying patterns of various sessile ferrofluid dro...
Magnetic digital microfluidics is advantageous over other existing droplet manipulation methods, whi...
The assembly and jamming of magnetic nanoparticles (NPs) at liquid-liquid interfaces is a versatile ...
Wireless and programmable manipulation of droplets is a challenge. We addressed this challenge by a ...
Solid ferromagnetic materials are rigid in shape and cannot be reconfigured. Ferrofluids, although r...
The evaporation of colloidal droplets is currently a topic of intensive research due to its wide ran...
Ferrofluids exhibit a unique combination of liquid properties and strong magnetic response, which le...
Superparamagnetism exists only in nanocrystals, and to endow micro/macro-materials with superparamag...
Self-assembly of nanoparticles at fluid-fluid interfaces is a promising route to fabricate functiona...