Synthetic microswimmers take an important place within the interdisciplinary field of active soft matter. Many efforts are being made to develop, understand and ultimately control them, because of their great potential for fundamental studies and applications. A widely employed type is that of catalytically propelled microswimmers, such as platinum-half-coated colloids which achieve self-propulsion in aqueous hydrogen peroxide environments via a catalytic reaction taking place on the platinum. Surprisingly, although these swimmers are typically found self-propelling parallel to walls, the origins for this near-wall behavior and the influence of the walls are still largely unexplored. In this thesis, we examine the behavior of catalytic micr...
This dissertation contains original research on a range of problems involving the locomotion of diff...
Active matter systems are continuously consuming energy from the environment to achieve different pu...
Microswimmers, such as bacteria, are known to show different behaviours depending on their local env...
Synthetic microswimmers take an important place within the interdisciplinary field of active soft ma...
Catalytic colloidal swimmers that propel due to self-generated fluid flows exhibit strong affinity f...
Catalytic colloidal swimmers that propel due to self-generated fluid flows exhibit strong affinity f...
Catalytic colloidal swimmers that propel due to self-generated fluid flows exhibit strong affinity f...
We study the effect of a nearby planar wall on the propulsion of a spherical phoretic micro-swimmer ...
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...
Microswimmers typically move near walls, which can strongly influence their motion. However, direct ...
Microswimmers typically move near walls, which can strongly influence their motion. However, direct ...
Tiny self-propelled swimmers capable of autonomous navigation through complex environments provide a...
Microswimmers typically move near walls, which can strongly influence their motion. However, direct ...
Cooperative motion in biological microswimmers is crucial for their survival as it facilitates adhes...
This dissertation contains original research on a range of problems involving the locomotion of diff...
Active matter systems are continuously consuming energy from the environment to achieve different pu...
Microswimmers, such as bacteria, are known to show different behaviours depending on their local env...
Synthetic microswimmers take an important place within the interdisciplinary field of active soft ma...
Catalytic colloidal swimmers that propel due to self-generated fluid flows exhibit strong affinity f...
Catalytic colloidal swimmers that propel due to self-generated fluid flows exhibit strong affinity f...
Catalytic colloidal swimmers that propel due to self-generated fluid flows exhibit strong affinity f...
We study the effect of a nearby planar wall on the propulsion of a spherical phoretic micro-swimmer ...
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...
Microswimmers typically move near walls, which can strongly influence their motion. However, direct ...
Microswimmers typically move near walls, which can strongly influence their motion. However, direct ...
Tiny self-propelled swimmers capable of autonomous navigation through complex environments provide a...
Microswimmers typically move near walls, which can strongly influence their motion. However, direct ...
Cooperative motion in biological microswimmers is crucial for their survival as it facilitates adhes...
This dissertation contains original research on a range of problems involving the locomotion of diff...
Active matter systems are continuously consuming energy from the environment to achieve different pu...
Microswimmers, such as bacteria, are known to show different behaviours depending on their local env...