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Microscale Marangoni Surfers

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arxiv 2005.06811 v1 pith:3IGIU65F submitted 2020-05-14 cond-mat.soft

classification cond-mat.soft
keywords marangoniconcentrationlasermagnitudesurfactantsurfersactiveadsorbed
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We apply laser light to induce the asymmetric heating of Janus colloids adsorbed at water-oil interfaces and realize active micrometric "Marangoni surfers". The coupling of temperature and surfactant concentration gradients generates Marangoni stresses leading to self-propulsion. Particle velocities span four orders of magnitude, from microns/s to cm/s, depending on laser power and surfactant concentration. Experiments are rationalized by finite elements simulations, defining different propulsion regimes relative to the magnitude of the thermal and solutal Marangoni stress components.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. ActiveCheerios: 3D-Printed Marangoni-Driven Active Particles at an Interface

    cond-mat.soft 2024-11 conditional novelty 6.0 of 10

    3D-printed ethanol-powered particles move on water via the Marangoni effect and cluster via the Cheerios effect, with designs that translate, spin, and link into programmable assemblies.

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