Negative Permittivity Behaviors Derived from Dielectric Resonance and Plasma Oscillation in Percolative Bismuth Ferrite/Silver Composites

介电常数 材料科学 电介质 铁氧体(磁铁) 复合材料 等离子体振荡 凝聚态物理 相对介电常数 德鲁德模型 共振(粒子物理) 等离子体 冶金 光电子学 物理 粒子物理学 量子力学
作者
Pengtao Yang,Kai Sun,Yan Wu,Haikun Wu,Xuechun Yang,Xinfeng Wu,Hailiang Du,Runhua Fan
出处
期刊:Journal of Physical Chemistry C [American Chemical Society]
卷期号:126 (30): 12889-12896 被引量:36
标识
DOI:10.1021/acs.jpcc.2c03543
摘要

Negative permittivity of materials can be obtained by plasma oscillation or dielectric resonance, but the relationship between these two negative permittivity behaviors has been neglected. Combining the advantages of two negative permittivity behaviors, the negative permittivity can be more tunable and is expected to realize epsilon-near-zero behavior. In this work, percolative bismuth ferrite/silver composites with different contents of Ag were successfully fabricated by a simple solid-state sintering method. With the addition of Ag, the Lorentz-like and Drude-like negative permittivity behaviors were successively observed in bismuth ferrite/silver composites. The reasons for the two types of negative permittivity behaviors are dielectric resonance and plasma oscillation, respectively. Further investigation revealed that the synergistic effect of dipole resonance and free electrons led to a change of resonance frequency, a decrease of magnitude, and a transition of two negative permittivity behaviors. Moreover, with the addition of Ag in percolative bismuth ferrite/silver composites, the electrical conductivity and thermal conductivity changed abruptly at a certain volume fraction, suggesting a percolation behavior.

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