A synthetic hybrid nanomotor, which combines chemically powered propulsion and magnetically driven locomotion, is described. The new catalytic–magnetic nanomotor consists of a flexible multisegment Pt-Au-Agflex-Ni nanowire, with the Pt-Au and Au-Agflex-Ni portions responsible for the catalytic and magnetic propulsion modes, respectively. The experimental data and theoretical considerations indicate that the hybrid design only minimally compromises the individual propulsion modes. Rapid and convenient switching from the catalytic to the magnetic mode is illustrated. The resulting catalytic–magnetic adaptive nanomotor can address the fuel depletion and salt limitation common to chemically powered motors by switching to magnetic propulsion. Re...
Efficient and controlled nanoscale propulsion in harsh environments requires careful design and manu...
This work focuses on the investigation of platinum-based catalytic micro/nanomotors, including worki...
ConspectusMicro- and nanomotors are nonliving micro- and nanoparticles that are rendered motile by s...
A synthetic hybrid nanomotor, which combines chemically powered propulsion and magnetically driven l...
A synthetic hybrid nanomotor, which combines chemically powered propulsion and magnetically driven l...
The unique swimming strategies of natural microorganisms have inspired recent development of magneti...
Fuel-free magnetically driven propulsion of flexible Au/Ag/Ni nanowires, with a gold ‘head’ and nick...
Fuel-free magnetically driven propulsion of flexible Au/Ag/Ni nanowires, with a gold ‘head’ and nick...
Efficient and controlled nanoscale propulsion in harsh environments requires careful design and manu...
Efficient and controlled nanoscale propulsion in harsh environments requires careful design and manu...
Efficient and controlled nanoscale propulsion in harsh environments requires careful design and manu...
Efficient and controlled nanoscale propulsion in harsh environments requires careful design and manu...
Efficient and controlled nanoscale propulsion in harsh environments requires careful design and manu...
Efficient and controlled nanoscale propulsion in harsh environments requires careful design and manu...
Efficient and controlled nanoscale propulsion in harsh environments requires careful design and manu...
Efficient and controlled nanoscale propulsion in harsh environments requires careful design and manu...
This work focuses on the investigation of platinum-based catalytic micro/nanomotors, including worki...
ConspectusMicro- and nanomotors are nonliving micro- and nanoparticles that are rendered motile by s...
A synthetic hybrid nanomotor, which combines chemically powered propulsion and magnetically driven l...
A synthetic hybrid nanomotor, which combines chemically powered propulsion and magnetically driven l...
The unique swimming strategies of natural microorganisms have inspired recent development of magneti...
Fuel-free magnetically driven propulsion of flexible Au/Ag/Ni nanowires, with a gold ‘head’ and nick...
Fuel-free magnetically driven propulsion of flexible Au/Ag/Ni nanowires, with a gold ‘head’ and nick...
Efficient and controlled nanoscale propulsion in harsh environments requires careful design and manu...
Efficient and controlled nanoscale propulsion in harsh environments requires careful design and manu...
Efficient and controlled nanoscale propulsion in harsh environments requires careful design and manu...
Efficient and controlled nanoscale propulsion in harsh environments requires careful design and manu...
Efficient and controlled nanoscale propulsion in harsh environments requires careful design and manu...
Efficient and controlled nanoscale propulsion in harsh environments requires careful design and manu...
Efficient and controlled nanoscale propulsion in harsh environments requires careful design and manu...
Efficient and controlled nanoscale propulsion in harsh environments requires careful design and manu...
This work focuses on the investigation of platinum-based catalytic micro/nanomotors, including worki...
ConspectusMicro- and nanomotors are nonliving micro- and nanoparticles that are rendered motile by s...