There is considerable interest in powering and maneuvering nanostructures remotely in fluidic media using noninvasive fuel-free methods, for which small homogeneous magnetic fields are ideally suited. Current strategies include helical propulsion of chiral nanostructures, cilia-like motion of flexible filaments, and surface assisted translation of asymmetric colloidal doublets and magnetic nanorods, in all of which the individual structures are moved in a particular direction that is completely tied to the characteristics of the driving fields. As we show in this paper, when we use appropriate magnetic field configurations and actuation time scales, it is possible to maneuver geometrically identical nanostructures in different directions, a...
Significant progress has been made in the fabrication of micron and sub-micron structures whose moti...
Development of targeted drug delivery systems using magnetic microrobots increases the therapeutic i...
Locomotion in fluids at the nanoscale is dominated by viscous drag. One efficient propulsion scheme ...
There is considerable interest in powering and maneuvering nanostructures remotely in fluidic media ...
Micro- and nanomotors are nonliving micro- and nanoparticles that are rendered motile by supplying e...
For biomedical applications, such as targeted drug delivery and microsurgery, it is essential to dev...
Externally controlled motion of micro and nanomotors in a fluid environment constitutes a promising ...
To achieve permanent propulsion of micro-objects in confined fluids is an elusive but challenging go...
Magnetically actuated micro‐/nanoswimmers can potentially be used in noninvasive biomedical applicat...
The remarkable efficiency and dynamics of micromachines in living organisms have inspired researcher...
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...
Field-driven direct assembly of nanoscale matter has impact in disparate fields of science. In micr...
Màster en Nanociència i Nanotecnologia, Facultat de Física, Universitat de Barcelona, Curs: 2017-201...
The unique swimming strategies of natural microorganisms have inspired recent development of magneti...
Significant progress has been made in the fabrication of micron and sub-micron structures whose moti...
Development of targeted drug delivery systems using magnetic microrobots increases the therapeutic i...
Locomotion in fluids at the nanoscale is dominated by viscous drag. One efficient propulsion scheme ...
There is considerable interest in powering and maneuvering nanostructures remotely in fluidic media ...
Micro- and nanomotors are nonliving micro- and nanoparticles that are rendered motile by supplying e...
For biomedical applications, such as targeted drug delivery and microsurgery, it is essential to dev...
Externally controlled motion of micro and nanomotors in a fluid environment constitutes a promising ...
To achieve permanent propulsion of micro-objects in confined fluids is an elusive but challenging go...
Magnetically actuated micro‐/nanoswimmers can potentially be used in noninvasive biomedical applicat...
The remarkable efficiency and dynamics of micromachines in living organisms have inspired researcher...
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...
Field-driven direct assembly of nanoscale matter has impact in disparate fields of science. In micr...
Màster en Nanociència i Nanotecnologia, Facultat de Física, Universitat de Barcelona, Curs: 2017-201...
The unique swimming strategies of natural microorganisms have inspired recent development of magneti...
Significant progress has been made in the fabrication of micron and sub-micron structures whose moti...
Development of targeted drug delivery systems using magnetic microrobots increases the therapeutic i...
Locomotion in fluids at the nanoscale is dominated by viscous drag. One efficient propulsion scheme ...