External electric and magnetic fields have already been proven to be a versatile tool to control the particle assembly; however, the degree of control of the dynamics and versatility of the produced structures is expected to increase if both can be implemented simultaneously. For example, while micromagnets can rapidly assemble superparamagnetic particles, repeated, rapid disassembly or reassembly is not trivial because of the remanence and coercivity of metals used in such applications. Here, an interdigitated design of micromagnet and microfabricated electrodes enables rapid switching of colloids between their magnetic and electric potential minima. Active control over colloids between two such adjacent potential minima enables a fast on/...
The assembly of materials from building blocks has been in the core of a wide range of applications ...
We introduce a new class of spherical colloids that reversibly self-assemble into well-defined nonli...
Ag nanoplates and Fe<sub>3</sub>O<sub>4</sub> nanoparticle-based ferrofluids were utilized to fabric...
External electric and magnetic fields have already been proven to be a versatile tool to control the...
During the last decade the focus in colloid science on self-assembly has moved from mostly spherical...
In this instructional review, we discuss how to control individual colloids and ensembles of colloid...
Colloidal suspensions and tunable self-assembly of colloidal particles attract a great interest in r...
To realize new and directed self-assembly (SA) pathways, the focus in colloid science and nanoscienc...
We introduce a new class of spherical colloids that reversibly self-assemble into well-defined nonli...
To realize new and directed self-assembly (SA) pathways, the focus in colloid science and nanoscienc...
Over the past few decades, the out-of-equilibrium transport and assembly of colloidal particles have...
A diverse set of functional materials can be fabricated by assembling dispersions of colloids and na...
This study explored the application of localized electric fields for reversible directed self-assemb...
Controlling assembly of colloidal particles into different phases and microstructures could provide ...
We study how dispersions of colloidal particles in a cholesteric liquid crystal behave under a time-...
The assembly of materials from building blocks has been in the core of a wide range of applications ...
We introduce a new class of spherical colloids that reversibly self-assemble into well-defined nonli...
Ag nanoplates and Fe<sub>3</sub>O<sub>4</sub> nanoparticle-based ferrofluids were utilized to fabric...
External electric and magnetic fields have already been proven to be a versatile tool to control the...
During the last decade the focus in colloid science on self-assembly has moved from mostly spherical...
In this instructional review, we discuss how to control individual colloids and ensembles of colloid...
Colloidal suspensions and tunable self-assembly of colloidal particles attract a great interest in r...
To realize new and directed self-assembly (SA) pathways, the focus in colloid science and nanoscienc...
We introduce a new class of spherical colloids that reversibly self-assemble into well-defined nonli...
To realize new and directed self-assembly (SA) pathways, the focus in colloid science and nanoscienc...
Over the past few decades, the out-of-equilibrium transport and assembly of colloidal particles have...
A diverse set of functional materials can be fabricated by assembling dispersions of colloids and na...
This study explored the application of localized electric fields for reversible directed self-assemb...
Controlling assembly of colloidal particles into different phases and microstructures could provide ...
We study how dispersions of colloidal particles in a cholesteric liquid crystal behave under a time-...
The assembly of materials from building blocks has been in the core of a wide range of applications ...
We introduce a new class of spherical colloids that reversibly self-assemble into well-defined nonli...
Ag nanoplates and Fe<sub>3</sub>O<sub>4</sub> nanoparticle-based ferrofluids were utilized to fabric...