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Dielectric properties of polystyrene based composites filled with core-shell BaTiO3/polystyrene hybrid nanoparticles

机译:核壳型BaTiO 3 /聚苯乙烯杂化纳米粒子填充的聚苯乙烯基复合材料的介电性能

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摘要

In this work, core-shell structured BaTiO3/polystyrene nanoparticles (BT-PS) with different thickness of PS shell were synthesized through atom transfer radical polymerization and the influence of their shell thickness on dielectric properties of BTPS/ PS composites was studied. Two types of BT-PS with the PS shell of 3 nm or 12 nm were obtained by controlling the polymerization time. The structure of BT-PS was carefully characterized by infrared spectroscopy, X-ray diffraction, thermal gravimetric analysis, and transmission electron microscope. The results confirmed the successful preparation of core-shell BT-PS nanoparticles. Compared to pristine BT, the core-shell particles can be more homogeneously dispersed into PS matrix. As a result, higher dielectric constant, higher breakdown strength, and lower dielectric loss were achieved in BT-PS/PS composites. Moreover, the dielectric constant of BT-PS/PS composites displayed frequency independent behavior. In addition, the composites filled by BT-PS with 3 nm of PS shell showed better dielectric properties than those filled by BT-PS with 12 nm of PS shell. A maximum energy density as large as 4.24 J/cm3 was obtained in BT-PS/PS films.
机译:本文通过原子转移自由基聚合反应,合成了具有不同PS壳厚度的核壳结构BaTiO3 /聚苯乙烯纳米粒子(BT-PS),研究了其壳厚对BTPS / PS复合材料介电性能的影响。通过控制聚合时间,获得了两种具有3nm或12nm PS壳的BT-PS。 BT-PS的结构通过红外光谱,X射线衍射,热重分析和透射电子显微镜仔细表征。结果证实了核-壳BT-PS纳米颗粒的成功制备。与原始BT相比,核-壳颗粒可以更均匀地分散到PS基质中。结果,在BT-PS / PS复合材料中实现了更高的介电常数,更高的击穿强度和更低的介电损耗。此外,BT-PS / PS复合材料的介电常数显示出与频率无关的行为。此外,用3 nm PS壳的BT-PS填充的复合材料比用12 nm PS壳的BT-PS填充的复合材料表现出更好的介电性能。 BT-PS / PS薄膜的最大能量密度高达4.24 J / cm 3

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