A wide-frequency range dielectric tuning of BaTiO3by embedding metal nanocrystals

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Abstract

Fe nanocrystals (NCs) were embedded into the epitaxial BaTiO3 (BTO) matrix. According to optimized growth processes, a novel nanocomposite system was constructed, which consisted a well epitaxial BTO layer and three-dimensional Fe NCs. Based on this, the different dielectric response in the regions of low temperature-high frequency and low frequency-high temperature were revealed by the contribution of hopping and interfacial polarizations, respectively. With the increased amount of Fe NCs, the obvious enhancement in the low-frequency conductivity, middle frequency capacitance, and high-frequency inductive effect was found. The embedded metal NCs play an important role in tuning the dielectric behaviors and AC conductivity of oxide dielectrics. This significant rectification effect in wide-frequency ranges opens up a new direction for designing embedded nano-capacitors.

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Xiong, Z., Liu, Q., Tang, J., Fang, L., Zhang, X., Li, J., … Shi, D. (2021). A wide-frequency range dielectric tuning of BaTiO3by embedding metal nanocrystals. RSC Advances, 11(24), 14578–14586. https://doi.org/10.1039/d0ra09854j

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