Improved Discharge Energy Density of Poly(vinylidene fluoride)-Based Nanocomposites via a Small Amount of Dopamine-Modified TiO 2 Nanosheets

JOURNAL OF ELECTRONIC MATERIALS(2021)

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摘要
Dielectric capacitors have attracted increasing attention for their fast charge–discharge speeds as well as high power density, and they have been widely used in advanced electronics and electric power systems. Here, dopamine-modified TiO 2 (TiO 2 @PDA) nanosheets were synthesized via hydrothermal reaction and in situ polymerization. Then the synthesized TiO 2 @PDA nanosheets were introduced into the poly(vinylidene fluoride) (PVDF) matrix via solution blending. Our results reveal that loading a small amount of TiO 2 @PDA nanosheets can effectively enhance the energy storage performance of the nanocomposites. For example, a superior discharge energy density with 10.53 J/cm 3 is obtained for the 9 wt.% TiO 2 @PDA/PVDF nanocomposite at 195 MV/m, which is 1.75 times as large as discharge energy density of pure PVDF (6.01 J/cm 3 at 170 MV/m). Such significant improvement is due to the large aspect ratio as well as dopamine modification of the TiO 2 nanosheets. The study provides a feasible way to prepare the nanocomposites with excellent energy storage performance.
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关键词
Poly(vinylidene fluoride),TiO2 nanosheets,dopamine,solution casting,discharge energy density
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