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3D-printed barium titanate/poly-(vinylidene fluoride) nano-hybrids with anisotropic dielectric properties

机译:具有各向异性介电性能的3D印刷钛酸钡/聚 - (偏二乙烯氟化物)纳米杂种

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摘要

Electrospun BaTiO3 nanofibers (BTNFs) are synthesized and blended in a poly(vinylidene fluoride) (PVDF) matrix to obtain a flexible nano-hybrid composite with high dielectric constant (flexible high-k). The blending is performed with different BTNF contents (0.6, 4.5, 20 vol%). The rheological properties of the starting materials are optimized to shape the hybrid by the precision-extrusion-based fuse deposition modeling technique. The 3D-printed BTNFs allow complex shapes with different degrees of fiber alignment as the result of printing shear stress and the chemical composition of the starting material. The dielectric properties of the nano-hybrid are controlled by anisotropy with an enhancement in the nanofiber cross direction (perpendicular to), where the dielectric constant k(perpendicular to) at 1 kHz is increased to ca. 200 from 13 of the PVDF matrix.
机译:Electromun BATIO3纳米纤维(BTNFS)在聚(偏二氟乙烯)(PVDF)基质中合成并混合,得到具有高介电常数(柔性高k)的柔性纳米杂化复合物。 用不同的BTNF内容物(0.6,4.5,20体积%)进行混合。 通过精密挤出的熔断器沉积建模技术优化起始材料的流变性能以塑造混合。 3D打印的BTNFS允许具有不同程度的纤维对准的复杂形状,作为印刷剪切应力和原料的化学成分。 纳米杂交机的介电性质通过各向异性控制,具有纳米纤维横向(垂直于)的增强,其中1kHz的介电常数K(垂直于)增加到CA. 来自PVDF矩阵的13个。

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