To achieve permanent propulsion of micro-objects in confined fluids is an elusive but challenging goal that will foster future development of microfluidics and biotechnology. Recent attempts based on a wide variety of strategies are still far from being able to design simple, versatile, and fully controllable swimming engines on the microscale. Here we show that DNA-linked anisotropic colloidal rotors, composed of paramagnetic colloidal particles with different or similar size, achieve controlled propulsion when subjected to a magnetic field precessing around an axis parallel to the plane of motion. During cycling motion, stronger viscous friction at the bounding plate, as compared to fluid resistance in the bulk, creates an asymmetry in di...
Significant progress has been made in the fabrication of micron and sub-micron structures whose moti...
Thermal ratchets can extract useful work from random fluctuations. This is common in the molecular s...
Microscale propulsion impacts a diverse array of fields, with simplistic microrobots allowing for no...
To achieve permanent propulsion of micro-objects in confined fluids is an elusive but challenging go...
To achieve permanent propulsion of micro-objects in confined fluids is an elusive but challenging go...
We show that DNA-linked anisotropic doublets composed of paramagnetic colloidal particles can be end...
We show that DNA-linked anisotropic doublets composed of paramagnetic colloidal particles can be end...
The remarkable efficiency and dynamics of micromachines in living organisms have inspired researcher...
We study the propulsion of a micron-size paramagnetic colloidal doublet dispersed in water and drive...
We study the propulsion of a micron-size paramagnetic colloidal doublet dispersed in water and drive...
Micro- and nanomotors are nonliving micro- and nanoparticles that are rendered motile by supplying e...
Biological flows at the microscopic scale are important for the transport of nutrients, locomotion, ...
For biomedical applications, such as targeted drug delivery and microsurgery, it is essential to dev...
We show that DNA-based self-assembly can serve as a general and flexible tool to construct artificia...
We study propulsion arising from microscopic colloidal rotors dynamically assembled and driven in a ...
Significant progress has been made in the fabrication of micron and sub-micron structures whose moti...
Thermal ratchets can extract useful work from random fluctuations. This is common in the molecular s...
Microscale propulsion impacts a diverse array of fields, with simplistic microrobots allowing for no...
To achieve permanent propulsion of micro-objects in confined fluids is an elusive but challenging go...
To achieve permanent propulsion of micro-objects in confined fluids is an elusive but challenging go...
We show that DNA-linked anisotropic doublets composed of paramagnetic colloidal particles can be end...
We show that DNA-linked anisotropic doublets composed of paramagnetic colloidal particles can be end...
The remarkable efficiency and dynamics of micromachines in living organisms have inspired researcher...
We study the propulsion of a micron-size paramagnetic colloidal doublet dispersed in water and drive...
We study the propulsion of a micron-size paramagnetic colloidal doublet dispersed in water and drive...
Micro- and nanomotors are nonliving micro- and nanoparticles that are rendered motile by supplying e...
Biological flows at the microscopic scale are important for the transport of nutrients, locomotion, ...
For biomedical applications, such as targeted drug delivery and microsurgery, it is essential to dev...
We show that DNA-based self-assembly can serve as a general and flexible tool to construct artificia...
We study propulsion arising from microscopic colloidal rotors dynamically assembled and driven in a ...
Significant progress has been made in the fabrication of micron and sub-micron structures whose moti...
Thermal ratchets can extract useful work from random fluctuations. This is common in the molecular s...
Microscale propulsion impacts a diverse array of fields, with simplistic microrobots allowing for no...