The Marangoni contraction of sessile drops of a binary mixture of a volatile and a nonvolatile liquid has been investigated experimentally and theoretically. The origin of the contraction is the locally inhomogeneous evaporation rate of sessile drops. This leads to surface tension gradients and thus to a Marangoni flow. Simulations show that the interplay of Marangoni flow, capillary flow, diffusive transport, and evaporative losses can establish a quasistationary drop profile with an apparent nonzero contact angle even if both liquid components individually wet the substrate completely. Experiments with different solvents, initial mass fractions, and gaseous environments reveal a previously unknown universal power-law relation between the ...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
The Marangoni contraction of sessile drops of a binary mixture of a volatile and a nonvolatile liqui...
Adjusting the wetting properties of water through the addition of a miscible liquid is commonly used...
SignificanceThe shape and dynamics of small sessile droplets are dictated by capillary forces. For l...
SignificanceThe shape and dynamics of small sessile droplets are dictated by capillary forces. For l...
The Marangoni contraction of sessile droplets occurs when a binary mixture of volatile liquids is pl...
We propose the evaporation model of picoliter sessile drop of binary solvent mixture (with infinitel...
We propose the evaporation model of picoliter sessile drop of binary solvent mixture (with infinitel...
Freely receding evaporating sessile droplets of perfectly wetting liquids, for which the observed fi...
For a small sessile or pendant droplet it is generally assumed that gravity does not play any role o...
The transport and aggregation of particles in suspensions is an important process in many physicoche...
When a droplet comes in contact with a completely wetting surface, the liquid typically spreads unti...
Single droplets immersed in an ambient liquid represent the smallest transfer unit in a liquid/liqui...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
The Marangoni contraction of sessile drops of a binary mixture of a volatile and a nonvolatile liqui...
Adjusting the wetting properties of water through the addition of a miscible liquid is commonly used...
SignificanceThe shape and dynamics of small sessile droplets are dictated by capillary forces. For l...
SignificanceThe shape and dynamics of small sessile droplets are dictated by capillary forces. For l...
The Marangoni contraction of sessile droplets occurs when a binary mixture of volatile liquids is pl...
We propose the evaporation model of picoliter sessile drop of binary solvent mixture (with infinitel...
We propose the evaporation model of picoliter sessile drop of binary solvent mixture (with infinitel...
Freely receding evaporating sessile droplets of perfectly wetting liquids, for which the observed fi...
For a small sessile or pendant droplet it is generally assumed that gravity does not play any role o...
The transport and aggregation of particles in suspensions is an important process in many physicoche...
When a droplet comes in contact with a completely wetting surface, the liquid typically spreads unti...
Single droplets immersed in an ambient liquid represent the smallest transfer unit in a liquid/liqui...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...
Hypothesis: Thermal Marangoni flow in evaporating sessile water droplets is much weaker in experimen...