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Fabrication, structural and dielectric property of lead-free perovskite silver niobate ceramics

机译:无铅钙钛矿铌酸盐陶瓷制备,结构和介电性能

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摘要

Dielectric capacitors with high recoverable energy density are in high demand for their application in electrical and electronic systems. Among lead-free dielectric materials, silver niobate (AgNbO3) has attracted growing interest due to its superior energy storage density at room temperature. The field-induced phase transition from antiferroelectric (AFE) phase to ferroelectric (FE) phase contributes to its large energy density. In this work, pure perovskite silver niobate ceramics were fabricated in an oxygen atmosphere by the solid-state reaction technique. The Pbcm orthorhombic phase of AgNbO3 was closely observed using the Rietveld refinement method to provide explanation for the origin of high spontaneous polarization within a unit cell. Local structural analysis via piezoelectric force microscopy revealed the existence of ferroelectric nano domains, which may contribute to the high energy storage efficiency (eta = 99.9926%) in AgNbO3 at low electric fields. The phase transitions of AgNbO3 were also investigated via the dependence of the dielectric permittivity (epsilon' and epsilon '') and loss angle tangent (tan delta) on temperatures, providing insights into the further modification of AgNbO3.
机译:具有高可回收能量密度的介电电容对其在电气和电子系统中的应用具有很高的需求。在无铅介电材料中,由于其在室温下的储能密度优异,因此银铌酸盐(AgNBO3)引起了生长的利益。从抗废料(AFE)相对铁电(Fe)相的现场诱导的相转变有助于其大的能量密度。在这项工作中,通过固态反应技术在氧气气氛中制造纯Perovskite银铌陶瓷。使用RIETVELD细化方法密切观察到AGNBO3的PBCM正交相,为单位细胞内的高自发极化起源提供说明。通过压电力显微镜的局部结构分析揭示了铁电纳米结构域的存在,这可能导致低电场AgnBO3中的高能储存效率(ETA = 99.9926%)。还通过介电介电常数(ε和ε')和损失角正态(TAN DELTA)对温度的依赖性研究了AGNBO3的相转变,从而进一步改性AgnBO3。

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