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首页> 外文期刊>CERAMICS INTERNATIONAL >Annealing heating rate dependence of microstructure and multiferroic properties in Bi4Ti2.9Fe0.1O12/CoFe2O4 layered magnetoelectric composite films prepared by chemical solution deposition method
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Annealing heating rate dependence of microstructure and multiferroic properties in Bi4Ti2.9Fe0.1O12/CoFe2O4 layered magnetoelectric composite films prepared by chemical solution deposition method

机译:通过化学溶液沉积法制备的Bi4Ti2.9Fe0.1O12 / COFE2O4层状磁电复合膜的微观结构和多元性能的退火加热速率依赖性

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摘要

Lead-free magnetoelectric composite films of CoFe2O4 (CFO) and Bi4Ti2.9Fe0.1O12 (BTF) were prepared on the LaNiO3-coated Si substrate by chemical solution deposition. Though the CFO layer randomly grows on the LaNiO3 layer, the oriented growth of the BTF layer can be regulated by rapid annealing treatment. The results indicated that the annealing heating rate significantly affects the c-axis orientation of the BTF layer, thereby resulting in obvious changes in microstructure, leakage behavior, dielectricity and ferroelectricity of the BTF/CFO films. The BTF/CFO film prepared at the heating rate of 40 degrees C/s presents the most compact structure, minimum leakage current, maximum dielectric constant and the highest residual polarization of 28.8 mu C/cm(2). Moreover, the excellent magnetoelectric coupling performance along with the highest magnetoelectric coupling voltage coefficient alpha(E) of 20.1 V/cm.Oe can be achieved in these conditions.
机译:通过化学溶液沉积在LaniO3涂覆的Si底物上制备CoFe2O4(CFO)和Bi4Ti2.9Fe0.1O12(BTF)的无铅磁电复合薄膜。 尽管CFO层随机地生长在LaniO 3层上,但是通过快速退火处理可以调节BTF层的取向生长。 结果表明,退火加热速率显着影响了BTF层的C轴取向,从而导致BTF / CFO膜的微观结构,泄漏行为,介电和铁电性明显变化。 以40℃/ s的加热速率制备的BTF / CFO膜具有最紧凑的结构,最小漏电流,最大介电常数和28.8μc/ cm(2)的最高剩余偏振。 此外,在这些条件下可以实现优异的磁电耦合性能以及20.1V / cm.oe的最高磁电耦合电压系数α(e)。

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