Slip Length Dependent Propulsion Speed of Catalytic Colloidal Swimmers near Walls

Publication date

2020-01-28

Authors

Ketzetzi, Stefania
De Graaf, JoostISNI 0000000387930739
Doherty, Rachel P.
Kraft, Daniela J.

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Article
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Abstract

Catalytic colloidal swimmers that propel due to self-generated fluid flows exhibit strong affinity for surfaces. Here, we report experimental measurements of a significant dependence of such microswimmers' speed on the nearby substrate material. We find that speeds scale with the solution contact angle θ on the substrate, which relates to the associated hydrodynamic substrate slip length, as Vâ(cosθ+1)-3/2. We show that such dependence can be attributed to osmotic coupling between swimmers and substrate. Our work points out that hydrodynamic slip at nearby walls, though often unconsidered, can significantly impact microswimmer self-propulsion.

Keywords

General Physics and Astronomy

Citation

Ketzetzi, S, De Graaf, J, Doherty, R P & Kraft, D J 2020, 'Slip Length Dependent Propulsion Speed of Catalytic Colloidal Swimmers near Walls', Physical Review Letters, vol. 124, no. 4, 048002. https://doi.org/10.1103/PhysRevLett.124.048002