Authors: Reich, D.H., Tanase, M., Hultgren, A., Bauer, L. A., Chen, C. S., Meyer, G. J.
Subject Terms: nanoporous templates, multifunctional magnetic nanowires, nickel, two-segment Au/Ni nanowires, nanowire-molecule linkages, magnetic trapping, fluid suspension, dipolar forces, lithographically patterned micromagnets, magnetic particles, gold, fluorescence, electrodeposition, viscous drag, Au-Ni
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Relation: Journal of Applied Physics, 15 May 2003, vol.93, no.10, pp. 7275-80; http://jhir.library.jhu.edu/handle/1774.2/38290
Availability: http://jhir.library.jhu.edu/handle/1774.2/38290
Authors: Hong, Kimin, Yang, F.Y., Liu, Kai, Reich, D.H., Searson, P.C., Chien, C.-L., Balakirev, F. F., Boebinger, G. S.
Subject Terms: mean free path, high-field magnetoresistance, electrodeposited Bi wires, Bi nanowire arrays, high magnetic fields, zero field, resistance, nanowire geometry, field orientation, nanostructured materials, high field effects, perpendicular magnetoresistance, modified two-current model, nanostructured materials Key Phrase Headings: giant positive magnetoresistance, giant magnetoresistance, electrodeposits, carrier mean free path, bismuth, high-field response, wire diameter, Bi bulk properties
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Relation: Journal of Applied Physics 15 April 1999, vol.85, no.8, pp. 6184-6; http://jhir.library.jhu.edu/handle/1774.2/38276
Availability: http://jhir.library.jhu.edu/handle/1774.2/38276
Subject Terms: collective coordinates, Thiele steady-state, weak external perturbations, soft modes, nanowires, magnetic domain walls, ferromagnetic materials, vortex wall, steady viscous motion, Walker breakdown
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Relation: Physical Review Letters 28 March 2008, vol.100, no.12, pp. 127204-1-4; http://jhir.library.jhu.edu/handle/1774.2/33765
Availability: http://jhir.library.jhu.edu/handle/1774.2/33765
Authors: Liu, Zhu, Xia, Guoqiang, Zhu, Frank, Kim, Su, Markovic, Nina, Chien, Chia-Ling, Searson, Peter C.
Subject Terms: nanoporous channels, nickel-rich shell, copper-rich core, overpotentials, Cu(II) concentration, core-shell microstructure, phase separation, etching, nickel alloys, nanowires, nanotubes, grain size, nanotechnology, electrodeposition, copper alloys, magnetic properties, Ni-Cu
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Relation: Journal of Applied Physics, 15 March 2008, vol.103, no.6, pp. 064313-1-6; http://jhir.library.jhu.edu/handle/1774.2/38268
Availability: http://jhir.library.jhu.edu/handle/1774.2/38268
Authors: Hultgren, A., Tanase, M., Chen, C. S., Meyer, G. J., Reich, D.H.
Subject Terms: mouse fibroblast cells, NIH-3T3 cells, magnetic beads, ferromagnetic Ni wires, magnetic separations, nanowires, ferromagnetic materials, iomagnetism, 350 nm, 35 micron, nickel
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Relation: Journal of Applied Physics, 15 May 2003, vol.93, no.10, pp. 7554-6.; http://jhir.library.jhu.edu/handle/1774.2/38292
Availability: http://jhir.library.jhu.edu/handle/1774.2/38292
Authors: Raciti, David Michael
Contributors: Erlebacher, Jonah D., Wang, Chao, Bevan, Michael A., Gracias, David H., Mueller, Tim
Subject Terms: Nanotechnology, Carbon dioxide, CO2 Reduction, Cu nanowires, copper nanocatalysts, electrocatalysis, pH effect, oxygen reduction reaction, nanoparticles
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Availability: http://jhir.library.jhu.edu/handle/1774.2/44680
Authors: Besar, Kalpana
Contributors: Tovar, John D., Katz, Howard E., Thon, Susanna M., Mao, Hai-Quan, Spicer, James B., Erlebacher, Jonah D., Bragg, Arthur E.
Subject Terms: Sensors, Organic field effect transistor, Nanowires, Biointerfaces, Ammonia, Ethylene, Glial fibrillary acidic protien
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Availability: http://jhir.library.jhu.edu/handle/1774.2/40718