Collections of interacting active particles, self-propelling or not, have shown remarkable phenomena including the emergence of dynamic patterns across different length scales, from animal groups to vibrated grains, microtubules, bacteria, and chemicalor field-driven colloids. Burgeoning experimental and simulation activities are now exploring the possibility of realizing solid and stable structures from passive elements that are assembled by a few active dopants. Here we show that such an elusive task may be accomplished by using a small amount of apolar dopants, namely synthetic active but not self-propelling units. We use blue light to rapidly assemble 2D colloidal clusters and gels via nonequilibrium diffusiophoresis, where microscopic ...
Catalytically active colloids maintain nonequilibrium conditions in which they produce and deplete c...
Designing protocols to dynamically direct the self-assembly of colloidal particles has become an imp...
Active matter can spontaneously form complex patterns and assemblies via a one-way energy flow from ...
The collective phenomena exhibited by artificial active matter systems present novel routes to fabri...
The collective phenomena exhibited by artificial active matter systems present novel routes to fabri...
The collective phenomena exhibited by artificial active matter systems present novel routes to fabri...
The collective phenomena exhibited by artificial active matter systems present novel routes to fabri...
The collective phenomena exhibited by artificial active matter systems present novel routes to fabri...
The collective phenomena exhibited by artificial active matter systems present novel routes to fabri...
The collective phenomena exhibited by artificial active matter systems present novel routes to fabri...
The collective phenomena exhibited by artificial active matter systems present novel routes to fabri...
Colloids that interact via a short-range attraction serve as the primary building blocks for a broad...
Self-assembly is a promising method for creating new materials. When building blocks are slowly crow...
Self-assembly is a promising method for creating new materials. When building blocks are slowly crow...
Catalytically active colloids maintain nonequilibrium conditions in which they produce and deplete c...
Catalytically active colloids maintain nonequilibrium conditions in which they produce and deplete c...
Designing protocols to dynamically direct the self-assembly of colloidal particles has become an imp...
Active matter can spontaneously form complex patterns and assemblies via a one-way energy flow from ...
The collective phenomena exhibited by artificial active matter systems present novel routes to fabri...
The collective phenomena exhibited by artificial active matter systems present novel routes to fabri...
The collective phenomena exhibited by artificial active matter systems present novel routes to fabri...
The collective phenomena exhibited by artificial active matter systems present novel routes to fabri...
The collective phenomena exhibited by artificial active matter systems present novel routes to fabri...
The collective phenomena exhibited by artificial active matter systems present novel routes to fabri...
The collective phenomena exhibited by artificial active matter systems present novel routes to fabri...
The collective phenomena exhibited by artificial active matter systems present novel routes to fabri...
Colloids that interact via a short-range attraction serve as the primary building blocks for a broad...
Self-assembly is a promising method for creating new materials. When building blocks are slowly crow...
Self-assembly is a promising method for creating new materials. When building blocks are slowly crow...
Catalytically active colloids maintain nonequilibrium conditions in which they produce and deplete c...
Catalytically active colloids maintain nonequilibrium conditions in which they produce and deplete c...
Designing protocols to dynamically direct the self-assembly of colloidal particles has become an imp...
Active matter can spontaneously form complex patterns and assemblies via a one-way energy flow from ...