Synthetic microswimmers are widely employed model systems in the studies of out-of-equilibrium phenomena. Unlike biological microswimmers which naturally occur in various shapes and forms, synthetic microswimmers have so far been limited almost exclusively to spherical shapes. Here, we exploit 3D printing to produce microswimmers with complex shapes in the colloidal size regime. We establish the flexibility of 3D printing by two-photon polymerisation to produce particles smaller than 10 microns with a high-degree of shape complexity. We further demonstrate that 3D printing allows control over the location of the active site through orienting the particles in different directions during printing. We verify that particles behave colloidally b...
This research utilized the Particle Replication in Non-wetting Templates (PRINT) technology to fabri...
Synthetic microswimmers take an important place within the interdisciplinary field of active soft ma...
Swimming is a fundamental feature in many living systems. Biological microorganisms move in the sear...
Hypothesis: Our ability to dictate the colloid geometry is intimately related to self-assembly. The ...
Microfabrication techniques have opened up new ways to study the dynamics of microsystems expanding ...
The motion of microscopic objects is strongly affected by their surrounding environment. In quiescen...
Two-Photon Polymerization (TPP) is a fabrication technique based on the localized linking of photose...
Self-propelling microparticles are often proposed as synthetic models for biological microswimmers, ...
Microorganisms are able to overcome the thermal randomness of their surroundings by harvesting energ...
A soft microrobot composed of a microgel and driven by the light-controlled nonequilibrium dynamics ...
Additive manufacturing at the micro- and nanoscale has seen a recent upsurge to suit the increasing ...
In the last decades, additive manufacturing (AM), also called three-dimensional (3D) printing, has a...
This article provides a review of the recent development of biomimicking behaviors in active colloid...
Self-propelling microobjects or colloids are a topical research subject for soft matter microrobots ...
Abstract: Through billions of years of evolution, microorganisms mastered unique swimming behaviors ...
This research utilized the Particle Replication in Non-wetting Templates (PRINT) technology to fabri...
Synthetic microswimmers take an important place within the interdisciplinary field of active soft ma...
Swimming is a fundamental feature in many living systems. Biological microorganisms move in the sear...
Hypothesis: Our ability to dictate the colloid geometry is intimately related to self-assembly. The ...
Microfabrication techniques have opened up new ways to study the dynamics of microsystems expanding ...
The motion of microscopic objects is strongly affected by their surrounding environment. In quiescen...
Two-Photon Polymerization (TPP) is a fabrication technique based on the localized linking of photose...
Self-propelling microparticles are often proposed as synthetic models for biological microswimmers, ...
Microorganisms are able to overcome the thermal randomness of their surroundings by harvesting energ...
A soft microrobot composed of a microgel and driven by the light-controlled nonequilibrium dynamics ...
Additive manufacturing at the micro- and nanoscale has seen a recent upsurge to suit the increasing ...
In the last decades, additive manufacturing (AM), also called three-dimensional (3D) printing, has a...
This article provides a review of the recent development of biomimicking behaviors in active colloid...
Self-propelling microobjects or colloids are a topical research subject for soft matter microrobots ...
Abstract: Through billions of years of evolution, microorganisms mastered unique swimming behaviors ...
This research utilized the Particle Replication in Non-wetting Templates (PRINT) technology to fabri...
Synthetic microswimmers take an important place within the interdisciplinary field of active soft ma...
Swimming is a fundamental feature in many living systems. Biological microorganisms move in the sear...