Synthetic microswimmers are envisioned to be useful in numerous applications, many of which occur in tightly confined spaces. It is therefore important to understand how confinement influences swimmer dynamics. Here we study the motility of bimetallic microswimmers in linear and curved channels. Our experiments show swimmer velocities increase, up to 5 times, with the degree of confinement, and the relative velocity increase depends weakly on the fuel concentration and ionic strength in solution. Experimental results are reproduced in a numerical model which attributes the swimmer velocity increase to electrostatic and electrohydrodynamic boundary effects. Our work not only helps to elucidate the confinement effect of phoretic swimmers, but...
Whether they be spermatozoa in cervical mucus, or {\it C. elegans} in wet soil, swimming cells often...
Electromagnetically propelled helical nanoswimmers offer great potential for nanorobotic application...
The interaction between swimming micro-organisms or artificial self-propelled colloids and passive (...
Synthetic microswimmers take an important place within the interdisciplinary field of active soft ma...
Tiny self-propelled swimmers capable of autonomous navigation through complex environments provide a...
Cooperative motion in biological microswimmers is crucial for their survival as it facilitates adhes...
We analyze the effect of confining rigid and elastic boundaries on the motility of a model dipolar m...
This dissertation contains original research on a range of problems involving the locomotion of diff...
We study the effect of a nearby planar wall on the propulsion of a spherical phoretic micro-swimmer ...
In this work we study microwimmers, whether colloids or polymers, embedded in bulk or in confinement...
We analyzed the effect of confinement on the effective diffusion of a run-and-tumble E. coli-like fl...
Microswimmers, such as bacteria, are known to show different behaviours depending on their local env...
We analyzed the effect of confinement on the effective diffusion of a run-and-tumble E. coli-like fl...
The transport of motile microorganisms is strongly influenced by fluid flows that are ubiquitous in ...
Despite their importance in many biological, ecological, and physical processes, microorganismal flu...
Whether they be spermatozoa in cervical mucus, or {\it C. elegans} in wet soil, swimming cells often...
Electromagnetically propelled helical nanoswimmers offer great potential for nanorobotic application...
The interaction between swimming micro-organisms or artificial self-propelled colloids and passive (...
Synthetic microswimmers take an important place within the interdisciplinary field of active soft ma...
Tiny self-propelled swimmers capable of autonomous navigation through complex environments provide a...
Cooperative motion in biological microswimmers is crucial for their survival as it facilitates adhes...
We analyze the effect of confining rigid and elastic boundaries on the motility of a model dipolar m...
This dissertation contains original research on a range of problems involving the locomotion of diff...
We study the effect of a nearby planar wall on the propulsion of a spherical phoretic micro-swimmer ...
In this work we study microwimmers, whether colloids or polymers, embedded in bulk or in confinement...
We analyzed the effect of confinement on the effective diffusion of a run-and-tumble E. coli-like fl...
Microswimmers, such as bacteria, are known to show different behaviours depending on their local env...
We analyzed the effect of confinement on the effective diffusion of a run-and-tumble E. coli-like fl...
The transport of motile microorganisms is strongly influenced by fluid flows that are ubiquitous in ...
Despite their importance in many biological, ecological, and physical processes, microorganismal flu...
Whether they be spermatozoa in cervical mucus, or {\it C. elegans} in wet soil, swimming cells often...
Electromagnetically propelled helical nanoswimmers offer great potential for nanorobotic application...
The interaction between swimming micro-organisms or artificial self-propelled colloids and passive (...