Drops on soft surfaces learn the hard way
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Summary
In PNAS, Style et al. reveal yet another surprise hidden within this classic system: droplets spontaneously migrate along substrates that are chemically homogeneous, but inhomogeneously deformable.
- Type
- article
- Published
- 2013-07-19
- Cited by
- 10
- References
- 27
- OpenAlex
- https://openalex.org/W23872842
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:33837904
Keywords
Humanities, Psychology, Social psychology, Philosophy
References
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- Advances in patterning materials for 193 nm immersion lithography.
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- Re-shaping the coffee ring.
- How to Make Water Run Uphill
- Contact angles of liquids at deformable solid surfaces
- Contact angles on a soft solid: from Young's law to Neumann's law.
- Wetting: Statics and dynamics
- An Essay on the Cohesion of Fluids
- Electrowetting: from basics to applications
Cited by
- Numerical modeling of gas–liquid–solid interactions: Gas–liquid free surfaces interacting with deformable solids
- Estimation of the thermocapillary force and its applications to precise droplet control on a microfluidic chip
- Roughness and Fiber Fraction Dominated Wetting of Electrospun Fiber-Based Porous Meshes
- Magnetowetting dynamics of sessile ferrofluid drops on soft surfaces.
- A thin-film model for droplet spreading on soft solid substrates.
- Water evaporation from solute-containing aerosol droplets: Effects of internal concentration and diffusivity profiles and onset of crust formation
- A computational model for three-phase fluid-structure interaction and its application to cellulose microfibril dynamics
- Optical Contact Angle Measurement Considering Spreading, Evaporation and Reactive Substrate
- Sticky Yet Slippery: Molecular Ordering Reconciles Bubble‐Surface Affinity With Ultralow Friction at the Nanoscale
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