Frequency-dependent ferroelectric behavior of BaMn3Ti4O14.25 at room temperature

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Abstract

We report the activation field and selective frequency-dependent ferroelectric behavior of BaMn3Ti4O14.25 (BMT-134) at room temperature. BMT-134, a recently discovered multiferroic complex oxide, exhibits antiferromagnetic and ferroelectric behavior and belongs to the hollandite crystal class. The microstructure can be manipulated through processing conditions to prepare a nanocrystalline textured tablet. We measured polarization-electric field (P-E) hysteresis loops and strain-electric field butterfly loops as a function of frequency in order to investigate the AC dynamics of domain switching and strain behavior. Under an electric field loading condition, a clear hysteresis loop of the electric field-displacement curve is obtained at 50Hz, indicating that room temperature ferroelectricity is attainable under the right processing conditions. When the frequency is increased to 500Hz, the coercive field also increases, until the frequency reaches 5 kHz, at which point the electric field versus electric displacement becomes linear indicating the limit of domain switching at high frequency.

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Hossain, M. E., Liu, S., O’Brien, S., & Li, J. (2015). Frequency-dependent ferroelectric behavior of BaMn3Ti4O14.25 at room temperature. Applied Physics Letters, 107(3). https://doi.org/10.1063/1.4927246

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