| Literature DB >> 33557442 |
César Magén1,2,3, Javier Pablo-Navarro1,2,4, José María De Teresa1,2,3.
Abstract
Focused-electron-beam-induced deposition (FEBID) is the ultimate additive nanofabrication technique for the growth of 3D nanostructures. In the field of nanomagnetism and its technological applications, FEBID could be a viable solution to produce future high-density, low-power, fast nanoelectronic devices based on the domain wall conduit in 3D nanomagnets. While FEBID has demonstrated the flexibility to produce 3D nanostructures with almost any shape and geometry, the basic physical properties of these out-of-plane deposits are often seriously degraded from their bulk counterparts due to the presence of contaminants. This work reviews the experimental efforts to understand and control the physical processes involved in 3D FEBID growth of nanomagnets. Co and Fe FEBID straight vertical nanowires have been used as benchmark geometry to tailor their dimensions, microstructure, composition and magnetism by smartly tuning the growth parameters, post-growth purification treatments and heterostructuring.Entities:
Keywords: core-shell; electron holography; focused-electron-beam-induced deposition; magnetic nanowires; nanofabrication; nanolithography; nanomagnetism; purification; thermal annealing; three-dimensional
Year: 2021 PMID: 33557442 PMCID: PMC7914621 DOI: 10.3390/nano11020402
Source DB: PubMed Journal: Nanomaterials (Basel) ISSN: 2079-4991 Impact factor: 5.076