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Artículo

Magnetic and elastic anisotropy in magnetorheological elastomers using nickel-based nanoparticles and nanochains

Landa, Romina Ailín; Antonel, Paula SoledadIcon ; Ruiz, Mariano ManuelIcon ; Pérez, Oscar E.; Butera, Alejandro RicardoIcon ; Jorge, Guillermo AntonioIcon ; Oliveira, Cristiano; Negri, Martín
Fecha de publicación: 06/12/2013
Editorial: Amer Inst Physics
Revista: Journal Of Applied Physics
ISSN: 0021-8979
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Físico-química, Ciencia de Los Polímeros, Electroquímica

Resumen

Nickel (Ni) based nanoparticles and nanochains were incorporated as fillers in polydimethylsiloxane (PDMS) elastomers and then these mixtures were thermally cured in the presence of a uniform magnetic field. In this way, macroscopically structured-anisotropic PDMS-Ni based magnetorheological composites were obtained with the formation of pseudo-chains-like structures (referred as needles) oriented in the direction of the applied magnetic field when curing. Nanoparticles were synthesized at room temperature, under air ambient atmosphere (open air, atmospheric pressure) and then calcined at 400 °C (in air atmosphere also). The size distribution was obtained by fitting SAXS experiments with a polydisperse hard spheres model and a Schulz-Zimm distribution, obtaining a size distribution centered at (10.0 - 0.6) nm with polydispersivity given by sigma= (8.0 ± 0.2) nm. The SAXS, XRD and TEM experiments are consistent with single crystal nanoparticles of spherical shape (average particle diameter obtained by TEM: (12 ± 1) nm). Nickel-based nanochains (average diameter: 360 nm; average length: 3 mm, obtained by SEM; aspect ratio=length/diameter ~10) were obtained at 85 ºC and ambient atmosphere (open air, atmospheric pressure). The magnetic properties of Ni-based nanoparticles and nanochains at room temperature are compared and discussed in terms of surface and size effects. Both Ni-based nanoparticles and nanochains were used as fillers for obtaining the PDMS structured magnetorheological composites, observing the presence of oriented needles. Magnetization curves, ferromagnetic resonance spectra (FMR) and strain-stress curves of low filler´s loading composites (2% w/w of fillers) were determined as functions of the relative orientation respect to the needles. The results indicate that even at low loadings it is possible to obtain magnetorheological composites with anisotropic properties, with larger anisotropy when using nanochains. For instance, the magnetic remanence, the FMR-resonance field and the elastic response to compression are higher when measured parallel to the needles (about 30% with nanochains as fillers). Analogously, the elastic response is also anisotropic, with larger anisotropy when using nanochains as fillers. Therefore, all experiments performed confirm the high potential of nickel nanochains to induce anisotropic effects in magnetorheological materials.
Palabras clave: Magnetorheological Elastomers , Magnetic Nanostructures , Magnetic Nanoparticles
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
Identificadores
URI: http://hdl.handle.net/11336/626
DOI: http://dx.doi.org/10.1063/1.4839735
Colecciones
Articulos(OCA CIUDAD UNIVERSITARIA)
Articulos de OFICINA DE COORDINACION ADMINISTRATIVA CIUDAD UNIVERSITARIA
Citación
Landa, Romina Ailín; P Soledad Antonel; Mariano M. Ruiz; Oscar E Pérez; Alejandro Butera; Guillermo Jorge; Cristiano L. P. Oliveira; Martín Negri; Magnetic and elastic anisotropy in magnetorheological elastomers using nickel-based nanoparticles and nanochains; Amer Inst Physics; Journal Of Applied Physics; 114; 6-12-2013;
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