Publication | Closed Access
Large Spontaneous Polarization and Clear Hysteresis Loop of a Room-Temperature Hybrid Ferroelectric Based on Mixed-Halide [BiI<sub>3</sub>Cl<sub>2</sub>] Polar Chains and Methylviologen Dication
173
Citations
33
References
2011
Year
EngineeringChemistryMethylviologen DicationMultiferroicsModerate TemperatureHybrid Organic-inorganic MaterialsFerroelectric ApplicationQuantum MaterialsClear Hysteresis LoopHybrid MaterialsMaterials ScienceInorganic ChemistryLarge Spontaneous PolarizationFerromagnetismElectronic MaterialsNatural SciencesApplied PhysicsCondensed Matter PhysicsFerroelectric MaterialsFunctional MaterialsOrganic-inorganic Hybrid Material
The search for hybrid organic-inorganic materials, which have the great advantage that they can be synthesized at moderate temperature (T < 200 °C), remains a great challenge in the field of ferroelectrics. Here, a room-temperature ferroelectric material with interesting characteristics, (MV)[BiI(3)Cl(2)] (MV(2+) = methylviologen), is reported. Its structure is based on polar inorganic chains resulting from a remarkable Cl/I segregation induced by methylviologen entities, which coincide with the fourfold polar axis of the tetragonal structure. Of great importance is that this room-temperature hybrid ferroelectric displays a clear electrical hysteresis loop with a large spontaneous polarization (>15 μC·cm(-2)).
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