In nano-optics, a formidable challenge remains in precise transport of a single optical nano-object along a programmed and routed path toward a predefined destination. Molecular motors in living cells that can walk directionally along microtubules have been the inspiration for realizing artificial molecular walkers. Here we demonstrate an active plasmonic system, in which a plasmonic nanorod can execute directional, progressive and reverse nanoscale walking on two or three-dimensional DNA origami. Such a walker comprises an anisotropic gold nanorod as its ‘body ’ and discrete DNA strands as its ‘feet’. Specifically, our walker carries optical information and can in situ optically report its own walking directions and consecutive steps at na...
The precise positioning of plasmonic nanoscale objects and organic molecules can significantly boost...
Keywords: DNA, Nanostructures, Nano-robotics, Self-assembly, Autonomous molecular devices A major ch...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be us...
Deterministic placement and dynamic manipulation of individual plasmonic nanoparticles with nanoscal...
Distinct electromagnetic properties can emerge from the three-dimensional (3D) configuration of a pl...
Plasmonic nanoantennas allow for enhancing the spontaneous emission, altering the emission polarizat...
Plasmonic nanoantennas allow for enhancing the spontaneous emission, altering the emission polarizat...
Coordinating functional parts to operate in concert is essential for machinery. In gear trains, mesh...
Sliding is one of the fundamental mechanical movements in machinery. In macroscopic systems, double-...
Imagine a host of nanoscale DNA robots move,autonomously over a microscale DNA nanostructure, each f...
Recently, the specific hybridization of DNA molecules has been used to construct self-assembled devi...
Efficient and robust artificial nanomotors could provide a variety of exciting possibilities for app...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be use...
Imagine a host of nanoscale DNA robots move autonomously over a microscale DNA nanostructure, each f...
Creating artificial macromolecular transport systems that can support the movement of molecules alon...
The precise positioning of plasmonic nanoscale objects and organic molecules can significantly boost...
Keywords: DNA, Nanostructures, Nano-robotics, Self-assembly, Autonomous molecular devices A major ch...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be us...
Deterministic placement and dynamic manipulation of individual plasmonic nanoparticles with nanoscal...
Distinct electromagnetic properties can emerge from the three-dimensional (3D) configuration of a pl...
Plasmonic nanoantennas allow for enhancing the spontaneous emission, altering the emission polarizat...
Plasmonic nanoantennas allow for enhancing the spontaneous emission, altering the emission polarizat...
Coordinating functional parts to operate in concert is essential for machinery. In gear trains, mesh...
Sliding is one of the fundamental mechanical movements in machinery. In macroscopic systems, double-...
Imagine a host of nanoscale DNA robots move,autonomously over a microscale DNA nanostructure, each f...
Recently, the specific hybridization of DNA molecules has been used to construct self-assembled devi...
Efficient and robust artificial nanomotors could provide a variety of exciting possibilities for app...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be use...
Imagine a host of nanoscale DNA robots move autonomously over a microscale DNA nanostructure, each f...
Creating artificial macromolecular transport systems that can support the movement of molecules alon...
The precise positioning of plasmonic nanoscale objects and organic molecules can significantly boost...
Keywords: DNA, Nanostructures, Nano-robotics, Self-assembly, Autonomous molecular devices A major ch...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be us...