In this work, we have established the evaporation-liquid flow coupling mechanism by which sessile nanofluid droplets on a hydrophobic substrate evaporate and agglomerate to form unique morphological features under controlled external heating. It is well understood that evaporation coupled with internal liquid flow controls particle transport in a spatiotemporal sense. Flow characteristics inside the heated droplet are investigated and found to be driven by the buoyancy effects. Velocity magnitudes are observed to increase by an order at higher temperatures with similar looking flow profiles. The recirculating flow induced particle transport coupled with collision of particles and shear interaction between them leads to the formation of dome...
While experiments and continuum models have provided a relatively good understanding of the evaporat...
Sessile nanofluid droplet evaporation is receiving increasing attention lately due to its potential ...
Effects of substrate temperature, substrate wettability, and particle concentration are experimental...
In this work, we have established the evaporation-liquid flow coupling mechanism by which sessile na...
Droplet evaporation is ubiquitous to multitude of applications such as microfluidics, surface patter...
The evaporation of a nanocolloidal sessile droplet exhibits preferential particle assembly, nanoporo...
The evaporation of a nanocolloidal sessile droplet exhibits preferential particle assembly, nanoporo...
The evaporation of a nanocolloidal sessile droplet exhibits preferential particle assembly, nanoporo...
We provide a comprehensive physical description of the vaporization, self-assembly, agglomeration, a...
We provide a comprehensive physical description of the vaporization, self-assembly, agglomeration, a...
Dynamics of contact free (levitated) drying of nanofluid droplets is ubiquitous in many application ...
Dynamics of contact free (levitated) drying of nanofluid droplets is ubiquitous in many application ...
Evaporation dynamics of a particle-laden droplet has been a topic of interest in recent times owing ...
The effect of internal circulation on evaporation of fluid droplets containing nano-sized particles ...
Sessile nanofluid droplet evaporation is receiving increasing attention lately due to its potential ...
While experiments and continuum models have provided a relatively good understanding of the evaporat...
Sessile nanofluid droplet evaporation is receiving increasing attention lately due to its potential ...
Effects of substrate temperature, substrate wettability, and particle concentration are experimental...
In this work, we have established the evaporation-liquid flow coupling mechanism by which sessile na...
Droplet evaporation is ubiquitous to multitude of applications such as microfluidics, surface patter...
The evaporation of a nanocolloidal sessile droplet exhibits preferential particle assembly, nanoporo...
The evaporation of a nanocolloidal sessile droplet exhibits preferential particle assembly, nanoporo...
The evaporation of a nanocolloidal sessile droplet exhibits preferential particle assembly, nanoporo...
We provide a comprehensive physical description of the vaporization, self-assembly, agglomeration, a...
We provide a comprehensive physical description of the vaporization, self-assembly, agglomeration, a...
Dynamics of contact free (levitated) drying of nanofluid droplets is ubiquitous in many application ...
Dynamics of contact free (levitated) drying of nanofluid droplets is ubiquitous in many application ...
Evaporation dynamics of a particle-laden droplet has been a topic of interest in recent times owing ...
The effect of internal circulation on evaporation of fluid droplets containing nano-sized particles ...
Sessile nanofluid droplet evaporation is receiving increasing attention lately due to its potential ...
While experiments and continuum models have provided a relatively good understanding of the evaporat...
Sessile nanofluid droplet evaporation is receiving increasing attention lately due to its potential ...
Effects of substrate temperature, substrate wettability, and particle concentration are experimental...