The electrical and magnetic properties of nanowires deposited from cobalt tricarbonyl nitrosyl (Co(CO)(3)NO) precursor by focused electron beam- and focused ion beam-induced deposition (FEBID and FIBID) have been investigated. As-deposited nanowires have similar Co content, around 50-55 at.%, but different electrical behaviour: FEBID nanowire is highly resistive (6.3 m Omega cm at RT) and non-metallic at low T, while the FIBID one has much lower resistivity (189 mu Omega cm at RT) and it is metallic. The magnetic properties, tested with magnetoresistance measurements, reveal a non-magnetic behaviour for both nanowires. After 400 degrees C annealing in vacuum FEBID wire is much less resistive (62 mu Omega cm at RT) and recovers the metallic ...
The domain wall nucleation and propagation fields in cobalt nanowires grown by focused electron beam...
The domain wall nucleation and propagation fields in cobalt nanowires grown by focused electron beam...
The domain wall nucleation and propagation fields in cobalt nanowires grown by focused electron beam...
The electrical and magnetic properties of nanowires deposited from cobalt tricarbonyl nitrosyl (Co(C...
Nanowires deposited by focused electron beam-induced deposition (FEBID) of cobalt tricarbonyl nitros...
Nanowires deposited by focused electron beam-induced deposition (FEBID) of cobalt tricarbonyl nitros...
The magnetic properties of nanowires (NWs) and square nanorings, which were deposited by focused ele...
This article belongs to the Special Issue Nanomaterials for the Advanced Manufacturing of Electronic...
The magnetic properties of nanowires (NWs) and square nanorings, which were deposited by focused ele...
Electron beam induced deposition of 3D cobalt nanowires with simultaneous high metallic content (≈80...
The magnetic properties of nanowires (NWs) and square nanorings, which were deposited by focused ele...
Electron beam induced deposition of 3D cobalt nanowires with simultaneous high metallic content (˜80...
Electron beam induced deposition of 3D cobalt nanowires with simultaneous high metallic content (≈80...
The growth of ferromagnetic nanostructures by means of focused-Ga+-beam-induced deposition (Ga+-FIBI...
The domain wall nucleation and propagation fields in cobalt nanowires grown by focused electron beam...
The domain wall nucleation and propagation fields in cobalt nanowires grown by focused electron beam...
The domain wall nucleation and propagation fields in cobalt nanowires grown by focused electron beam...
The domain wall nucleation and propagation fields in cobalt nanowires grown by focused electron beam...
The electrical and magnetic properties of nanowires deposited from cobalt tricarbonyl nitrosyl (Co(C...
Nanowires deposited by focused electron beam-induced deposition (FEBID) of cobalt tricarbonyl nitros...
Nanowires deposited by focused electron beam-induced deposition (FEBID) of cobalt tricarbonyl nitros...
The magnetic properties of nanowires (NWs) and square nanorings, which were deposited by focused ele...
This article belongs to the Special Issue Nanomaterials for the Advanced Manufacturing of Electronic...
The magnetic properties of nanowires (NWs) and square nanorings, which were deposited by focused ele...
Electron beam induced deposition of 3D cobalt nanowires with simultaneous high metallic content (≈80...
The magnetic properties of nanowires (NWs) and square nanorings, which were deposited by focused ele...
Electron beam induced deposition of 3D cobalt nanowires with simultaneous high metallic content (˜80...
Electron beam induced deposition of 3D cobalt nanowires with simultaneous high metallic content (≈80...
The growth of ferromagnetic nanostructures by means of focused-Ga+-beam-induced deposition (Ga+-FIBI...
The domain wall nucleation and propagation fields in cobalt nanowires grown by focused electron beam...
The domain wall nucleation and propagation fields in cobalt nanowires grown by focused electron beam...
The domain wall nucleation and propagation fields in cobalt nanowires grown by focused electron beam...
The domain wall nucleation and propagation fields in cobalt nanowires grown by focused electron beam...