Spontaneous periodicity is widely found in many biological and synthetic systems, and designing colloidal motors that mimic this feature may not only facilitate our understanding of how complexity emerges but also enable applications that benefit from a time-varying activity. However, there is so far no report on a colloidal motor system that shows controllable and spontaneous oscillation in speeds. Inspired by previous studies of oscillating silver microparticles, we report silver–poly(methyl methacrylate) microsphere Janus colloidal motors that moved, interacted with tracers, and exhibited negative gravitaxis all in an oscillatory fashion. Its dynamics, including pulsating speeds and magnitude, as well as whether moving forward in a puls...
We study both experimentally and theoretically the dynamics of chemically self-propelled Janus collo...
Colloids are micron-sized particles widely used in industrial processes and everyday products. Conve...
Self-propelled colloidal objects, such as motile bacteria or synthetic microswimmers, have microscop...
Spontaneous periodicity is widely found in many biological and synthetic systems, and designing coll...
In this work, we propose and demonstrate a dynamic colloidal molecule that is capable of moving auto...
Micromotors are an emerging class of micromachines that could find potential applications in biomedi...
Light-activated self-propelled colloids are synthesized and their active motion is studied us-ing op...
Self-propelling chemical motors have thus far required the fabrication of Janus particles with an as...
Le travail de thèse réalisé s’intéresse à la dynamique de particules actives et se compose dedeux pa...
Insight is provided into the collective behavior of visible‐light photochemically driven plasmonic A...
Motility in living systems is due to an array of complex molecular nanomotors that are essential for...
Understanding the transport properties of microorganisms in fluid is a fundamental problem in soft m...
While colloids and molecules in solution exhibit passive Brownian motion, particles that are partial...
Control over micromotors’ motion is of high relevance for lab-on-a-chip and biomedical engineering, ...
We study both experimentally and theoretically the dynamics of chemically self-propelled Janus collo...
Colloids are micron-sized particles widely used in industrial processes and everyday products. Conve...
Self-propelled colloidal objects, such as motile bacteria or synthetic microswimmers, have microscop...
Spontaneous periodicity is widely found in many biological and synthetic systems, and designing coll...
In this work, we propose and demonstrate a dynamic colloidal molecule that is capable of moving auto...
Micromotors are an emerging class of micromachines that could find potential applications in biomedi...
Light-activated self-propelled colloids are synthesized and their active motion is studied us-ing op...
Self-propelling chemical motors have thus far required the fabrication of Janus particles with an as...
Le travail de thèse réalisé s’intéresse à la dynamique de particules actives et se compose dedeux pa...
Insight is provided into the collective behavior of visible‐light photochemically driven plasmonic A...
Motility in living systems is due to an array of complex molecular nanomotors that are essential for...
Understanding the transport properties of microorganisms in fluid is a fundamental problem in soft m...
While colloids and molecules in solution exhibit passive Brownian motion, particles that are partial...
Control over micromotors’ motion is of high relevance for lab-on-a-chip and biomedical engineering, ...
We study both experimentally and theoretically the dynamics of chemically self-propelled Janus collo...
Colloids are micron-sized particles widely used in industrial processes and everyday products. Conve...
Self-propelled colloidal objects, such as motile bacteria or synthetic microswimmers, have microscop...