Multiferroic materials have attracted considerable attention as possible candidates for a wide variety of future microelectronic and memory devices, although robust magnetoelectric (ME) coupling between electric and magnetic orders at room temperature still remains difficult to achieve. In order to obtain robust ME coupling at room temperature, we studied the Pb(Fe0.5Nb0.5)O-3/Ni0.65Zn0.35Fe2O4/Pb(Fe0.5Nb0.5)O-3 (PFN/NZFO/PFN) trilayer structure as a representative FE/FM/FE system. We report the ferroelectric, magnetic and ME properties of PFN/NZFO/PFN trilayer nanoscale heterostructure having dimensions 70/20/70 nm, at room temperature. The presence of oly (00l) reflection of PFN and NZFO in the X-ray diffraction (XRD) patterns and electro...
Multiferroic (MF) materials with simultaneous magnetic and electric long range order and occasionall...
Interfacial multiferroics have recently emerged as a promising way to circumvent the lingering scarc...
Magnetoelectric multiferroics (ME MFs) exhibit both magnetic and ferroelectric orders and show coupl...
Single-phase magnetoelectric multiferroics are ferroelectric materials that display some form of mag...
Abstract Multiferroic composites are promising candidates for magnetic field sensors, next-generatio...
Using an external magnetic field, we have demonstrated room temperature control of the electric pola...
A 2-2 type multiferroic composite device encompassing three CoFe2O4 (CFO) layers confined between fo...
Co50Fe50/(0 1 1)-oriented lead magnesium niobate–lead titanate (PMN–PT) multiferroic (MF) heterostru...
Multiferroic materials, which offer the possibility of manipulating the magnetic state by an electri...
Department of Materials Science and EngineeringMagnetoelectric (ME) multiferroics, where (anti-)ferr...
Multiferroic magnetoelectric (ME) materials, which simultaneously show ferroelectricity and magnetic...
Electric-field control of magnetism is significant for the next generation of large-capacity and low...
The rapid development of computing applications demands novel low-energy consumption devices for inf...
Heterostructure Ba0.7Sr0.3TiO3-Ni0.8Zn0.2Fe2O4 composite thin films grown on Pt--- substrate were pr...
Over the past decade magnetoelectric (ME) mutiferroic (MF) materials and their devices are one of th...
Multiferroic (MF) materials with simultaneous magnetic and electric long range order and occasionall...
Interfacial multiferroics have recently emerged as a promising way to circumvent the lingering scarc...
Magnetoelectric multiferroics (ME MFs) exhibit both magnetic and ferroelectric orders and show coupl...
Single-phase magnetoelectric multiferroics are ferroelectric materials that display some form of mag...
Abstract Multiferroic composites are promising candidates for magnetic field sensors, next-generatio...
Using an external magnetic field, we have demonstrated room temperature control of the electric pola...
A 2-2 type multiferroic composite device encompassing three CoFe2O4 (CFO) layers confined between fo...
Co50Fe50/(0 1 1)-oriented lead magnesium niobate–lead titanate (PMN–PT) multiferroic (MF) heterostru...
Multiferroic materials, which offer the possibility of manipulating the magnetic state by an electri...
Department of Materials Science and EngineeringMagnetoelectric (ME) multiferroics, where (anti-)ferr...
Multiferroic magnetoelectric (ME) materials, which simultaneously show ferroelectricity and magnetic...
Electric-field control of magnetism is significant for the next generation of large-capacity and low...
The rapid development of computing applications demands novel low-energy consumption devices for inf...
Heterostructure Ba0.7Sr0.3TiO3-Ni0.8Zn0.2Fe2O4 composite thin films grown on Pt--- substrate were pr...
Over the past decade magnetoelectric (ME) mutiferroic (MF) materials and their devices are one of th...
Multiferroic (MF) materials with simultaneous magnetic and electric long range order and occasionall...
Interfacial multiferroics have recently emerged as a promising way to circumvent the lingering scarc...
Magnetoelectric multiferroics (ME MFs) exhibit both magnetic and ferroelectric orders and show coupl...