The complexities involved in achieving a tailor-made evaporative deposition pattern have remained a challenge. Here, we show that the morphological pattern of drying suspension droplets can be altered by varying substrate elastic modulus E: We find that the particle spot diameter and spacing between the particles scale with substrate stiffness as ds E 0: 15 and s E 1: 23; respectively. We show that the larger spot diameter and spacing between particles on a softer substrate are attributed to a higher energy barrier U associated with stronger pinning of the contact line. The particle deposition pattern is characterized in terms of deposition index, Id; whose value is 0.75 for centralized (multilayer) and uniform (monolayer) deposition patte...
Sessile droplets are liquid droplets resting on a flat substrate. During the evaporation of small se...
In this work, a comprehensive series of experiments is conducted to investigate the drying behaviour...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/106826/1/aic14338.pd
Prediction and active control of the spatial distribution of particulate deposits obtained from sess...
Evaporation of sessile drops is a common phenomenon in various problems, but its fundamental underst...
This work contributes to expand the scientific knowledge on sessile drop evaporation by presenting e...
This study investigates the evaporation of sessile pure water and nanosuspension drops on viscoelast...
We illustrate the importance of particle geometry on droplet contact line pinning, 'coffee-stain' fo...
Prediction and active control of the spatial distribution of particulate deposits obtained from sess...
As a droplet containing colloidal material dries on a surface, the suspended particles are deposited...
International audienceWe study the size and shape of the final deposit obtained when a drop with col...
In this study, pattern formation during evaporation of bidispersed drops (containing 1 and 3.2 μm pa...
When evaporated on a substrate, a droplet containing solutes usually deposits the solutes onto the s...
Prediction and control over particle deposit patterns obtained from sessile droplet evaporation are...
Understanding the formation of different morphological patterns depending on the particle size and s...
Sessile droplets are liquid droplets resting on a flat substrate. During the evaporation of small se...
In this work, a comprehensive series of experiments is conducted to investigate the drying behaviour...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/106826/1/aic14338.pd
Prediction and active control of the spatial distribution of particulate deposits obtained from sess...
Evaporation of sessile drops is a common phenomenon in various problems, but its fundamental underst...
This work contributes to expand the scientific knowledge on sessile drop evaporation by presenting e...
This study investigates the evaporation of sessile pure water and nanosuspension drops on viscoelast...
We illustrate the importance of particle geometry on droplet contact line pinning, 'coffee-stain' fo...
Prediction and active control of the spatial distribution of particulate deposits obtained from sess...
As a droplet containing colloidal material dries on a surface, the suspended particles are deposited...
International audienceWe study the size and shape of the final deposit obtained when a drop with col...
In this study, pattern formation during evaporation of bidispersed drops (containing 1 and 3.2 μm pa...
When evaporated on a substrate, a droplet containing solutes usually deposits the solutes onto the s...
Prediction and control over particle deposit patterns obtained from sessile droplet evaporation are...
Understanding the formation of different morphological patterns depending on the particle size and s...
Sessile droplets are liquid droplets resting on a flat substrate. During the evaporation of small se...
In this work, a comprehensive series of experiments is conducted to investigate the drying behaviour...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/106826/1/aic14338.pd