We study the effect of a nearby planar wall on the propulsion of a spherical phoretic micro-swimmer driven by reactions on its surface. An asymmetric coverage of catalysts on its surface which absorb reactants and generate products gives rise to an anisotropic interfacial flow that propels the swimmer. We analyse the near-wall dynamics of such a self-phoretic swimmer as a function of the asymmetric catalytic coverage of the surface. By an analysis of the fundamental singularities of the flow and concentration or electrostatic potential gradients generated we are able to obtain and rationalise a phase diagram of behaviours as a function of the characteristics of the swimmer surface. We find a variety of possible behaviours, from “bound state...
International audiencePhoretic self-propulsion is a unique example of force- and torque-free motion ...
Swimming, i.e., being able to advance in the absence of external forces by performing cyclic shape c...
Swimming, i.e., being able to advance in the absence of external forces by performing cyclic shape c...
We study the effect of a nearby planar wall on the propulsion of a phoretic Janus micro-swimmer driv...
Synthetic microswimmers take an important place within the interdisciplinary field of active soft ma...
Synthetic microswimmers take an important place within the interdisciplinary field of active soft ma...
In this work, we demonstrate our ability to precisely tailor the surface activity of self-propelled ...
In this work, we demonstrate our ability to precisely tailor the surface activity of self-propelled ...
In this work, we demonstrate our ability to precisely tailor the surface activity of self-propelled ...
In this work, we demonstrate our ability to precisely tailor the surface activity of self-propelled ...
In this work, we demonstrate our ability to precisely tailor the surface activity of self-propelled ...
In this work, we demonstrate our ability to precisely tailor the surface activity of self-propelled ...
In this work, we demonstrate our ability to precisely tailor the surface activity of self-propelled ...
This paper was presented at the 4th Micro and Nano Flows Conference (MNF2014), which was held at Uni...
International audiencePhoretic self-propulsion is a unique example of force- and torque-free motion ...
International audiencePhoretic self-propulsion is a unique example of force- and torque-free motion ...
Swimming, i.e., being able to advance in the absence of external forces by performing cyclic shape c...
Swimming, i.e., being able to advance in the absence of external forces by performing cyclic shape c...
We study the effect of a nearby planar wall on the propulsion of a phoretic Janus micro-swimmer driv...
Synthetic microswimmers take an important place within the interdisciplinary field of active soft ma...
Synthetic microswimmers take an important place within the interdisciplinary field of active soft ma...
In this work, we demonstrate our ability to precisely tailor the surface activity of self-propelled ...
In this work, we demonstrate our ability to precisely tailor the surface activity of self-propelled ...
In this work, we demonstrate our ability to precisely tailor the surface activity of self-propelled ...
In this work, we demonstrate our ability to precisely tailor the surface activity of self-propelled ...
In this work, we demonstrate our ability to precisely tailor the surface activity of self-propelled ...
In this work, we demonstrate our ability to precisely tailor the surface activity of self-propelled ...
In this work, we demonstrate our ability to precisely tailor the surface activity of self-propelled ...
This paper was presented at the 4th Micro and Nano Flows Conference (MNF2014), which was held at Uni...
International audiencePhoretic self-propulsion is a unique example of force- and torque-free motion ...
International audiencePhoretic self-propulsion is a unique example of force- and torque-free motion ...
Swimming, i.e., being able to advance in the absence of external forces by performing cyclic shape c...
Swimming, i.e., being able to advance in the absence of external forces by performing cyclic shape c...