Active materials represent a new class of condensed matter in which motile elements may collectively form dynamic, global structures out of equilibrium(1-3). Here, we present a general strategy to reconfigure active particles into various collective states by introducing imbalanced interactions. We demonstrate the concept with computer simulations of self-propelled colloidal spheres, and experimentally validate it in a two-dimensional (2D) system of metal-dielectric Janus colloids subjected to perpendicular a.c. electric fields. The mismatched, frequency-dependent dielectric responses of the two hemispheres of the colloids allow simultaneous control of particle motility and colloidal interactions. We realized swarms, chains, clusters and is...
We study how dispersions of colloidal particles in a cholesteric liquid crystal behave under a time-...
We study how dispersions of colloidal particles in a cholesteric liquid crystal behave under a time-...
Active matter physics has been developed with various types of self-propelled particles, including t...
Active materials represent a new class of condensed matter in which motile elements may collectively...
In this thesis, I present numerical simulations that explore the applications of self-propelled part...
Over the past few decades, the out-of-equilibrium transport and assembly of colloidal particles have...
The collective mobility of active matter (self-propelled objects that transduce energy into mechanic...
The collective mobility of active matter (self-propelled objects that transduce energy into mechanic...
Colloids are micron-sized particles widely used in industrial processes and everyday products. Conve...
Self-assembly of active particles is believed to play an important role in enabling tomorrow's gener...
Self-organization phenomena in ensembles of self-propelled particles open pathways to the synthesis ...
As demonstrated in biological systems, breaking the symmetry of surrounding hydrodynamic flow is the...
Colloidal robots refer to the colloid scale (from nm to μm) machines capable of carrying out program...
As demonstrated in biological systems, breaking the symmetry of surrounding hydrodynamic flow is the...
As demonstrated in biological systems, breaking the symmetry of surrounding hydrodynamic flow is the...
We study how dispersions of colloidal particles in a cholesteric liquid crystal behave under a time-...
We study how dispersions of colloidal particles in a cholesteric liquid crystal behave under a time-...
Active matter physics has been developed with various types of self-propelled particles, including t...
Active materials represent a new class of condensed matter in which motile elements may collectively...
In this thesis, I present numerical simulations that explore the applications of self-propelled part...
Over the past few decades, the out-of-equilibrium transport and assembly of colloidal particles have...
The collective mobility of active matter (self-propelled objects that transduce energy into mechanic...
The collective mobility of active matter (self-propelled objects that transduce energy into mechanic...
Colloids are micron-sized particles widely used in industrial processes and everyday products. Conve...
Self-assembly of active particles is believed to play an important role in enabling tomorrow's gener...
Self-organization phenomena in ensembles of self-propelled particles open pathways to the synthesis ...
As demonstrated in biological systems, breaking the symmetry of surrounding hydrodynamic flow is the...
Colloidal robots refer to the colloid scale (from nm to μm) machines capable of carrying out program...
As demonstrated in biological systems, breaking the symmetry of surrounding hydrodynamic flow is the...
As demonstrated in biological systems, breaking the symmetry of surrounding hydrodynamic flow is the...
We study how dispersions of colloidal particles in a cholesteric liquid crystal behave under a time-...
We study how dispersions of colloidal particles in a cholesteric liquid crystal behave under a time-...
Active matter physics has been developed with various types of self-propelled particles, including t...