材料科学
复合材料
纳米纤维
聚酰亚胺
复合数
电介质
静电纺丝
聚合物
电场
介电常数
图层(电子)
光电子学
物理
量子力学
作者
Junchuan Wang,Ying Sun,Pengna Wang,Xuemin Yu,Hongbing Shi,Xueqin Zhang,Hong Yang,Baoping Lin
标识
DOI:10.1016/j.jallcom.2019.03.142
摘要
Novel one-dimensional (1D) core-shell structured BaTiO3@ZrO2 ([email protected]2) nanofibers have been synthesized through coaxial electrospinning. Homogeneous composite films containing 1D [email protected]2 nanofibers as filler and polyimide (PI) as the polymer matrix were fabricated. The depolarizing ZrO2 layer with moderate dielectric constant was introduced onto the BT nanofibers surface and decreased the electric filed caused by the tremendous contrast between the PI matrix and the BT nanofibers in permittivity. The energy density and breakdown strength of the [email protected]2/PI composites can be substantially enhanced. It was established that the 2 vol% [email protected]2/PI composite film has the maximum energy density of 2.53 J/cm3 at 361 kV/mm, which is ≈ 180% higher than that of the pristine PI (1.40 J/cm3 at 303 kV/mm). Furthermore, finite element simulation was carried out to understand the effect of ZrO2 layer on the electric field distribution. This work demonstrates the advantages of the moderate inorganics layer in increasing the breakdown strength and highly enhancing the energy density of the polymer based composites.
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