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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Formation of PVDF-g-HEMA/BaTiO3 nanocomposites via in situ nanoparticle synthesis for high performance capacitor applications
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Formation of PVDF-g-HEMA/BaTiO3 nanocomposites via in situ nanoparticle synthesis for high performance capacitor applications

机译:通过原位纳米粒子合成形成PVDF-g-HEMA / BaTiO3纳米复合材料,用于高性能电容器

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摘要

PVDF-g-HEMA [poly(vinylidene fluoride)-graft-poly(2-hydroxy-ethylmethacrylate)]/Barium Titanate (BaTiO3) nanocomposites were prepared successfully via an in situ synthesis method without any catalyst or initiator. The in situ synthesis approach enables the formation of oxide nanoparticles in the presence of the grafted polymer with a hydroxyl functionalization group for direct coupling with oxide nanofillers. This elegant in situ nanoparticle synthesis method provides a facile, cost-effective and void-free dispersion of the nanoparticles in the matrix. The dielectric nanoparticle (BaTiO3) is well-attached onto the insulating polymer (PVDF) surface due to the surface anchoring linkage through hydrogen bonding between the two components, leading to the reduced aggregation in the resultant nanocomposites. The novel PVDF-g-HEMA/BaTiO3 nanocomposites are investigated as high energy density capacitor materials, achieving highest dielectric constant reaching up to 333, and a dielectric loss of 0.73 at 30 wt% BaTiO3 at 1 kHz.
机译:通过原位合成方法成功制备了PVDF-g-HEMA [聚(偏二氟乙烯)-接枝-聚(甲基丙烯酸2-羟基乙酯)] /钛酸钡(BaTiO3)纳米复合材料。原位合成方法使得能够在具有羟基官能化基团的接枝聚合物的存在下形成氧化物纳米颗粒,以直接与氧化物纳米填料偶联。这种优雅的原位纳米粒子合成方法为纳米粒子在基质中提供了便捷,经济高效且无空隙的分散体。介电纳米颗粒(BaTiO3)由于通过两个组分之间的氢键进行了表面锚固,因此可以很好地附着在绝缘聚合物(PVDF)的表面上,从而减少了所得纳米复合材料的聚集。研究了新型PVDF-g-HEMA / BaTiO3纳米复合材料作为高能量密度电容器材料,实现了高达333的最高介电常数,以及在1 kHz下30wt%BaTiO3时的介电损耗为0.73。

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