International audienceCatalytic swimmers have attracted much attention as alternatives to biological systems for examining collective microscopic dynamics and the response to physico-chemical signals. Yet, understanding and predicting even the most fundamental characteristics of their individual propulsion still raises important challenges. While chemical asymmetry is widely recognized as the cornerstone of catalytic propulsion, different experimental studies have reported that particles with identical chemical properties may propel in opposite directions. Here, we show that, beyond its chemical properties, the detailed shape of a catalytic swimmer plays an essential role in determining its direction of motion, demonstrating the compatibili...
Microorganisms are able to overcome the thermal randomness of their surroundings by harvesting energ...
Individually propulsive catalytic Janus particle swimmers are observed to self-assemble into aggrega...
We report a method to prepare catalytically active Janus colloids that "swim" in fluids and describe...
International audienceCatalytic swimmers have attracted much attention as alternatives to biological...
Artificial self-propelled micro- and nanoengines, or swimmers, have been increasingly attracting the...
The motion of an artificial microscale swimmer that uses a chemical reaction catalyzed on its own su...
In addition to self-propulsion by phoretic mechanisms that arises from an asymmetric distribution of...
The behaviour of a non-spherical osmotic motor – an axisymmetric catalytic particle self-propelling ...
International audienceSolid undeformable particles surrounded by a liquid medium or interface may pr...
Catalytic microswimmers that move by a phoretic mechanism in response to a self-induced chemical gra...
Catalytic microswimmers that move by a phoretic mechanism in response to a self-induced chemical gra...
The propulsion velocity of active colloids that asymmetrically catalyze a chemical reaction is probe...
Microspheres with catalytic caps have become a popular model system for studying self-propelled coll...
Although making artificial micrometric swimmers has been made possible by using various propulsion m...
The ability to control the degree of spin, or rotational velocity, for catalytic swimming devices op...
Microorganisms are able to overcome the thermal randomness of their surroundings by harvesting energ...
Individually propulsive catalytic Janus particle swimmers are observed to self-assemble into aggrega...
We report a method to prepare catalytically active Janus colloids that "swim" in fluids and describe...
International audienceCatalytic swimmers have attracted much attention as alternatives to biological...
Artificial self-propelled micro- and nanoengines, or swimmers, have been increasingly attracting the...
The motion of an artificial microscale swimmer that uses a chemical reaction catalyzed on its own su...
In addition to self-propulsion by phoretic mechanisms that arises from an asymmetric distribution of...
The behaviour of a non-spherical osmotic motor – an axisymmetric catalytic particle self-propelling ...
International audienceSolid undeformable particles surrounded by a liquid medium or interface may pr...
Catalytic microswimmers that move by a phoretic mechanism in response to a self-induced chemical gra...
Catalytic microswimmers that move by a phoretic mechanism in response to a self-induced chemical gra...
The propulsion velocity of active colloids that asymmetrically catalyze a chemical reaction is probe...
Microspheres with catalytic caps have become a popular model system for studying self-propelled coll...
Although making artificial micrometric swimmers has been made possible by using various propulsion m...
The ability to control the degree of spin, or rotational velocity, for catalytic swimming devices op...
Microorganisms are able to overcome the thermal randomness of their surroundings by harvesting energ...
Individually propulsive catalytic Janus particle swimmers are observed to self-assemble into aggrega...
We report a method to prepare catalytically active Janus colloids that "swim" in fluids and describe...