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首页> 外文期刊>CERAMICS INTERNATIONAL >Structural, dielectric and ferroelectric studies of thermally stable and efficient energy storage ceramic materials: (Na0.5-xKxBi0.5-xLax)TiO3
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Structural, dielectric and ferroelectric studies of thermally stable and efficient energy storage ceramic materials: (Na0.5-xKxBi0.5-xLax)TiO3

机译:热稳态高效储能陶瓷材料的结构,介电和铁电研究:( Na0.5-XKXBi0.5-Xlax)TiO3

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摘要

The structural, dielectric and ferroelectric properties of lead-free (Na0.5-xKxBi0.5-xLax)TiO3 (0 = x = 0.12) powders synthesized by modified sol-gel method was investigated. Rietveld refinement of synchrotron x-ray diffraction data confirms single phase rhombohedral crystal structure with R3c space group for all the compositions and anti-phase (a(-)a(-)a(-)) octahedral tilting angle decreased with increase in composition. Homogeneity and elemental proportions were confirmed by Energy dispersive x-ray spectrometry. The temperature-dependent dielectric study has shown two diffuse type of dielectric anomaly for all the samples, due to A-site disorder in the lattice, which has been assigned to two-phase transitions: ferroelectric to anti-ferroelectric and anti-ferroelectric to the paraelectric phase transition. Thermal stability range of dielectric constant increases from similar to 100 to 220 degrees C as a function of composition. Stable dielectric constant first increases from 1557 +/- 10% for x = 0 compositions and highest for x = 0.06 sample with epsilon(mid) similar to 2508 +/- 10% of the temperature range similar to 180-340 degrees C, and after that decreases to 1608 +/- 10% for x = 0.12, but remain higher than the x = 0 composition. Ferroelectric measurements have shown monotonously decreasing coercive field as a function of the composition due to decrease in the average grain size, confirmed by microstructural studies using field emission scanning electron microscope. An exponential increase in the energy storage efficiency from similar to 17% to 87% as a function of composition have also observed. These types of materials, with the high stable dielectric constant (epsilon(r)) and low loss (tan delta), have a vast scope in the field of the thermally stable dielectric constant materials and energy storage applications.
机译:研究了通过改性溶胶 - 凝胶法合成的无铅(Na0.5-XKXBi0.5-Xlax)TiO 3(0×X = 0.12)粉末的结构,介电和铁电性能。同步X射线衍射数据的RIETVELD细化确认了所有组合物的R3C空间组的单相菱面膜晶体结构,并随着组合物的增加而降低了八相(A( - )A( - )A( - ))八元倾斜角度降低。通过能量分散X射线光谱法确认均匀性和元素比例。由于晶格中的现场障碍,温度依赖性介电研究已经示出了所有样品的两种弥漫性介电异常,这已被分配到两相转变:铁电解与抗铁电和反铁电熨斗施电相转变。作为组合物的功能,介电常数的热稳定范围从类似于100至220℃增加。稳定的介电常数从1557 +/- 10%增加x = 0组合物,最高的X = 0.06样品与ε(中间)类似于2508 +/- 10%的温度范围,以及180-340℃,在X = 0.12的下降至1608 +/- 10%之后,但保持高于x = 0组成。由于平均晶粒尺寸的降低,铁电测量表明,由于平均晶粒尺寸的降低,通过降低了组合物的幂削出的矫顽场。通过使用场发射扫描电子显微镜的微观结构研究证实。由于组合物的函数,储能效率的指数增加与17%至87%也观察到。这些类型的材料,具有高稳定的介电常数(ε(R))和低损耗(TAN DELTA),具有在热稳定的介电恒定材料和能量存储应用领域的巨大范围。

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