This paper presents an experimental investigation on laser-assisted fabrication of oriented nanowires composed by magnetic nanoparticles. The nanowires were produced by implementation of pulsed laser deposition in presence of a magnetic field. The application of an external magnetic field led to the formation of nanowires with a length of several micrometers whose orientation is influenced by the direction of the magnetic field lines. The influence of the type of ambient gas and its pressure on morphology and phase composition of the deposited samples was investigated. It was found that the ambient gas has direct influence on both the degree of orientation and the phase composition of the nanowires. SEM analysis of samples deposited at different targetsubstrate distances showed that the density of the nanowires decreases with the increase of the distance. A preliminary result on the magnetic properties of the produced nanowires is also reported.

PLD fabrication of oriented nanowires in magnetic field / Nikov, Ru. G.; Dikovska, A. Og.; Avdeev, G. V.; Amoruso, S.; Ausanio, G.; Nedyalkov, N. N.. - In: APPLIED SURFACE SCIENCE. - ISSN 0169-4332. - 471:(2019), pp. 368-374. [10.1016/j.apsusc.2018.12.030]

PLD fabrication of oriented nanowires in magnetic field

S. Amoruso;G. Ausanio;
2019

Abstract

This paper presents an experimental investigation on laser-assisted fabrication of oriented nanowires composed by magnetic nanoparticles. The nanowires were produced by implementation of pulsed laser deposition in presence of a magnetic field. The application of an external magnetic field led to the formation of nanowires with a length of several micrometers whose orientation is influenced by the direction of the magnetic field lines. The influence of the type of ambient gas and its pressure on morphology and phase composition of the deposited samples was investigated. It was found that the ambient gas has direct influence on both the degree of orientation and the phase composition of the nanowires. SEM analysis of samples deposited at different targetsubstrate distances showed that the density of the nanowires decreases with the increase of the distance. A preliminary result on the magnetic properties of the produced nanowires is also reported.
2019
PLD fabrication of oriented nanowires in magnetic field / Nikov, Ru. G.; Dikovska, A. Og.; Avdeev, G. V.; Amoruso, S.; Ausanio, G.; Nedyalkov, N. N.. - In: APPLIED SURFACE SCIENCE. - ISSN 0169-4332. - 471:(2019), pp. 368-374. [10.1016/j.apsusc.2018.12.030]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/728812
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