Sessile water droplets containing nano-silica particles are allowed to evaporate in the presence of driven substrate oscillations at chosen frequencies. Different mode shapes are observed at different oscillation frequencies. As reference, the evaporation of the same droplets is also observed under stationary conditions i.e. in the absence of any oscillations. For all cases, the deposit structures formed by the agglomeration of the nano-silica particles have been imaged. It has been observed that for the stationary droplets and for droplets whose oscillations are initiated close to the resonance of the lowest allowable oscillation mode, the structures are similar having larger spread over height, while for higher frequencies the structures ...
A major challenge in developing nanoscale devices lies in controlling the position of such small mat...
In this thesis, we investigate several different experimental configurations of sessile droplets; so...
This study investigates pattern formation during evaporation of water-based nanofluid sessile drople...
This work explores the physical mechanism that can be used to control the final residual pattern of ...
This work analyses the unique spatio-temporal alteration of the deposition pattern of evaporating na...
This work explores the physical mechanism that can be used to control the final residual pattern of ...
The understanding of near-wall motion, evaporation behavior and dry pattern of sessile nanofluid dro...
Sessile water droplets on hydrophobic substrates have been subjected to mechanical oscillations to e...
Prediction and active control of the spatial distribution of particulate deposits obtained from sess...
The drying of sessile, nano-silica laden water droplet is studied under ambient conditions, in the a...
Evaporating sessile functional droplets act as the fundamental building block that controls the cumu...
We describe the systematic and quantitative investigation of a large number of patterns that emerge ...
In this work, a comprehensive series of experiments is conducted to investigate the drying behaviour...
The effect of surfactants with different chain length on the drying dynamics of nanosized dispersion...
We illustrate the importance of particle geometry on droplet contact line pinning, 'coffee-stain' fo...
A major challenge in developing nanoscale devices lies in controlling the position of such small mat...
In this thesis, we investigate several different experimental configurations of sessile droplets; so...
This study investigates pattern formation during evaporation of water-based nanofluid sessile drople...
This work explores the physical mechanism that can be used to control the final residual pattern of ...
This work analyses the unique spatio-temporal alteration of the deposition pattern of evaporating na...
This work explores the physical mechanism that can be used to control the final residual pattern of ...
The understanding of near-wall motion, evaporation behavior and dry pattern of sessile nanofluid dro...
Sessile water droplets on hydrophobic substrates have been subjected to mechanical oscillations to e...
Prediction and active control of the spatial distribution of particulate deposits obtained from sess...
The drying of sessile, nano-silica laden water droplet is studied under ambient conditions, in the a...
Evaporating sessile functional droplets act as the fundamental building block that controls the cumu...
We describe the systematic and quantitative investigation of a large number of patterns that emerge ...
In this work, a comprehensive series of experiments is conducted to investigate the drying behaviour...
The effect of surfactants with different chain length on the drying dynamics of nanosized dispersion...
We illustrate the importance of particle geometry on droplet contact line pinning, 'coffee-stain' fo...
A major challenge in developing nanoscale devices lies in controlling the position of such small mat...
In this thesis, we investigate several different experimental configurations of sessile droplets; so...
This study investigates pattern formation during evaporation of water-based nanofluid sessile drople...