Title :
Fabrication and Properties of Multiferroic Nanocomposite Films
Author :
Alnassar, M.Y. ; Ivanov, Y. ; Kosel, J.
Author_Institution :
Comput., Electr. & Math. Sci. & Eng. Div., King Abdullah Univ. of Sci. & Technol., Jeddah, Saudi Arabia
Abstract :
A new type of multiferroic polymer nanocomposite is presented, which exhibits excellent ferromagnetism and ferroelectricity simultaneously at room temperature. The multiferroic nanocomposite consists of a ferroelectric copolymer poly(vinylindene fluoride-trifluoroethylene) [P(VDF-TrFE)] and high aspect ratio ferromagnetic nickel (Ni) nanowires (NWs), which were grown inside anodic aluminum oxide membranes. The fabrication of nanocomposite films with Ni NWs embedded in P(VDF-TrFE) has been successfully carried out via a simple low-temperature spin-coating technique. Structural, ferromagnetic, and ferroelectric properties of the developed nanocomposite have been investigated. The remanent and saturation polarization as well as the coercive field of the ferroelectric phase are slightly affected by the incorporation of the NWs as well as the thickness of the films. While the former two decrease, the last increases by adding the NWs or increasing the thickness. The ferromagnetic properties of the nanocomposite films are found to be isotropic.
Keywords :
coercive force; dielectric polarisation; ferroelectric coercive field; ferroelectric materials; ferroelectric thin films; ferromagnetic materials; filled polymers; magnetic thin films; multiferroics; nanocomposites; nanomagnetics; nanowires; nickel; polymer blends; Ni; P(VDF-TrFE); anodic aluminum oxide membranes; coercive field; ferroelectric copolymer; ferroelectric properties; ferroelectricity; ferromagnetic nickel nanowires; ferromagnetic properties; ferromagnetism; low-temperature spin-coating; multiferroic polymer nanocomposite films; poly(vinylindene fluoride-trifluoroethylene); remanent polarization; saturation polarization; structural properties; temperature 293 K to 298 K; Fabrication; Magnetic domains; Magnetoelectric effects; Nickel; Polymers; Saturation magnetization; X-ray scattering; Ferroelectric films; magnetoelectric effect (ME); nanocomposites; nanowires (NWs); polymer films;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2014.2357839