Lubrication model shows solutal Marangoni and capillary forces attract same-composition binary droplets while thermal Marangoni repels them and solutal Marangoni drives chasing between different-composition droplets, corroborated by water-morpholine experiments.
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Contact line deposits in an evaporating drop
2 Pith papers cite this work, alongside 1,979 external citations. Polarity classification is still indexing.
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2026 2verdicts
UNVERDICTED 2representative citing papers
Active particles in drying droplets create self-driven flows and gradients that modify assembly patterns and contact line dynamics compared to passive evaporation-driven systems.
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Translation dynamics of evaporating sessile binary-mixture droplet populations
Lubrication model shows solutal Marangoni and capillary forces attract same-composition binary droplets while thermal Marangoni repels them and solutal Marangoni drives chasing between different-composition droplets, corroborated by water-morpholine experiments.
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From Coffee Rings to Self-Driven Assembly: Active Matter Enabled Design of Drying Droplets
Active particles in drying droplets create self-driven flows and gradients that modify assembly patterns and contact line dynamics compared to passive evaporation-driven systems.