Synchronization occurs widely in the natural and technological worlds, from the rhythm of applause and neuron firing to the quantum mechanics of coupled Josephson junctions, but has not been used to produce new spatial structures. Our understanding of self-assembly has evolved independently in the fields of chemistry and materials, and with a few notable exceptions has focused on equilibrium rather than dynamical systems. Here we combine these two phenomena to create synchronization-selected microtubes of Janus colloids, micron-sized spherical particles with different surface chemistry on their opposing hemispheres, which we study using imaging and computer simulation. A thin nickel film coats one hemisphere of each silica particle to gener...
Particle dispersions provide a promising tool for the engineering of functional materials that explo...
One of the greatest challenges in colloidal self-assembly is to obtain multiple distinct but transfo...
One of the greatest challenges in colloidal self-assembly is to obtain multiple distinct but transfo...
Colloids are micron-sized particles widely used in industrial processes and everyday products. Conve...
Swarmalators exhibit spatial and temporal self-organization; agents’ motions depend on their phase i...
Janus particles can self-assemble around microfabricated gears in reproducible configurations with a...
By engineering thin magnetic films onto homogeneous colloidal particles, various crystalline lattice...
Janus particles can self-assemble around microfabricated gears in reproducible configurations with a...
Janus particles exhibit interesting self-assembly behavior and functional performances. In particula...
Clusters in the form of aggregates of a small number of elemental units display structural, thermody...
Control of self-assembling systems at the micro- and nano-scale provides new opportunities for the e...
We introduce a new class of spherical colloids that reversibly self-assemble into well-defined nonli...
The concept of patchy particles is revolutionizing the research field of colloidal assembly, by the ...
The use of colloidal particles as models to understand processes on a smaller size-scale is a highly...
Dissipative colloidal materials use energy to generate and maintain structural complexity. The energ...
Particle dispersions provide a promising tool for the engineering of functional materials that explo...
One of the greatest challenges in colloidal self-assembly is to obtain multiple distinct but transfo...
One of the greatest challenges in colloidal self-assembly is to obtain multiple distinct but transfo...
Colloids are micron-sized particles widely used in industrial processes and everyday products. Conve...
Swarmalators exhibit spatial and temporal self-organization; agents’ motions depend on their phase i...
Janus particles can self-assemble around microfabricated gears in reproducible configurations with a...
By engineering thin magnetic films onto homogeneous colloidal particles, various crystalline lattice...
Janus particles can self-assemble around microfabricated gears in reproducible configurations with a...
Janus particles exhibit interesting self-assembly behavior and functional performances. In particula...
Clusters in the form of aggregates of a small number of elemental units display structural, thermody...
Control of self-assembling systems at the micro- and nano-scale provides new opportunities for the e...
We introduce a new class of spherical colloids that reversibly self-assemble into well-defined nonli...
The concept of patchy particles is revolutionizing the research field of colloidal assembly, by the ...
The use of colloidal particles as models to understand processes on a smaller size-scale is a highly...
Dissipative colloidal materials use energy to generate and maintain structural complexity. The energ...
Particle dispersions provide a promising tool for the engineering of functional materials that explo...
One of the greatest challenges in colloidal self-assembly is to obtain multiple distinct but transfo...
One of the greatest challenges in colloidal self-assembly is to obtain multiple distinct but transfo...