Magnetically Powered Flexible Metal Nanowire Motors
Abstract
Fuel-free magnetically driven propulsion of flexible Au/Ag/Ni nanowires, with a gold 'head' and nickel 'tail', linked by a partially dissolved and weakened silver bridge, is described. The flexible bridge facilitates the cyclic mechanical deformations under an external rotating magnetic field. Under such a field the nickel segment starts to rotate, facilitating the rotation of the gold segment at a different amplitude, hence breaking the system symmetry and inducing the movement. Forward ('pushing') and backward ('pulling') magnetically powered locomotion and a precise On/Off motion control are achieved by tailoring the length of the nickel and gold segments and modulating the magnetic field, respectively. Efficient locomotion in urine samples and in high-salt media is illustrated. The new magnetic nanowire swimmers can be prepared in large scale using a simple template electrodeposition protocol and offer considerable promise for diverse practical applications.
Additional Information
© 2010 American Chemical Society. Received 11 August 2010. Published online 29 September 2010. Published in print 20 October 2010. This work was supported by NSF (Award Number CBET 0853375).Attached Files
Supplemental Material - ja1072349_si_001.pdf
Supplemental Material - ja1072349_si_002.mpg
Supplemental Material - ja1072349_si_003.mpg
Supplemental Material - ja1072349_si_004.mpg
Supplemental Material - ja1072349_si_005.mpg
Supplemental Material - ja1072349_si_006.mpg
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Additional details
- Eprint ID
- 84564
- Resolver ID
- CaltechAUTHORS:20180129-134206117
- NSF
- CBET-0853375
- Created
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2018-01-31Created from EPrint's datestamp field
- Updated
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2021-11-15Created from EPrint's last_modified field