Magnetic behavior of polymorph composite nickel titanate nanofibers
| dc.contributor.author | Kumar, B. | |
| dc.contributor.author | Dhanasekhar, C. | |
| dc.contributor.author | Anandhan, S. | |
| dc.contributor.author | Kalpathy, S.K. | |
| dc.date.accessioned | 2026-02-05T09:26:39Z | |
| dc.date.issued | 2021 | |
| dc.description.abstract | Polymorph (spinel/ilmenite) composite nanofibers of nickel titanate (NTO) were prepared by a sol-gel assisted electrospinning process followed by pyrolysis using the styrene-acrylonitrile copolymer as a precursor at three different pyrolysis soaking temperatures (i.e. T= 773, 973, and 1173 K). The magnetic behavior of these composite NTO nanofibers was studied under isothermal and non-isothermal conditions in the temperature range of 20-300 K. The magnetic parameters such as coercivity (H<inf>c</inf>), remanence (M<inf>r</inf>), and saturation magnetisation (M<inf>s</inf>) were found to be strongly dependent onT. The highestH<inf>c</inf>andM<inf>r</inf>were observed for NTO nanofibers developed at 973 K, which have a mosaic structured morphology with spinel and ilmenite NTO crystallite sizes of ~39 nm and ~24 nm, respectively. On the other hand, the highestM<inf>s</inf>and switching field distribution were observed for mosaic structured NTO nanofibers having smaller crystallites (~13 nm and 24 nm for spinel and ilmenite NTO, respectively, with high inter-particle distance and high porosity) developed at 773 K, which are also rich in spinel NTO content. The correlation between the variation in magnetic behavior and structural/morphological features of NTO nanofibers is useful for NTO-based soft magnetic and multiferroic applications. © The Royal Society of Chemistry and the Centre National de la Recherche Scientifique 2021. | |
| dc.identifier.citation | New Journal of Chemistry, 2021, 45, 37, pp. 17438-17446 | |
| dc.identifier.issn | 11440546 | |
| dc.identifier.uri | https://doi.org/10.1039/d1nj01714d | |
| dc.identifier.uri | https://idr.nitk.ac.in/handle/123456789/23029 | |
| dc.publisher | Royal Society of Chemistry | |
| dc.subject | Isotherms | |
| dc.subject | Nanofibers | |
| dc.subject | Nickel compounds | |
| dc.subject | Pyrolysis | |
| dc.subject | Sol-gel process | |
| dc.subject | Sol-gels | |
| dc.subject | Composite nanofibers | |
| dc.subject | Electrospinning process | |
| dc.subject | Magnetic behavior | |
| dc.subject | Magnetic parameters | |
| dc.subject | Nickel titanates | |
| dc.subject | Non-isothermal condition | |
| dc.subject | Soaking temperature | |
| dc.subject | Styrene-acrylonitrile copolymers | |
| dc.subject | Temperature range | |
| dc.subject | Titanate nanofiber | |
| dc.subject | Styrene | |
| dc.subject | acrylonitrile | |
| dc.subject | copolymer | |
| dc.subject | nanofiber | |
| dc.subject | nickel | |
| dc.subject | styrene | |
| dc.subject | Article | |
| dc.subject | controlled study | |
| dc.subject | electrospinning | |
| dc.subject | magnetism | |
| dc.subject | morphology | |
| dc.subject | mosaicism | |
| dc.subject | nonhuman | |
| dc.subject | pyrolysis | |
| dc.subject | temperature | |
| dc.title | Magnetic behavior of polymorph composite nickel titanate nanofibers |
