Enhanced dielectric properties of poly(vinylidene fluoride) matrix nanocomposites incorporated with one-dimensional structure of titanate nanotubes

被引:0
|
作者
Kum-onsa, Pornsawan [1 ,2 ]
Chindudsadeegul, Parinya [1 ,2 ]
Thongbai, Prasit [3 ,4 ]
机构
[1] Burapha Univ, Fac Gems, Chanthaburi Campus, Chanthaburi 22170, Thailand
[2] Burapha Univ, Res Unit Integrated & Innovat Jewelry Mat, Chanthaburi Campus, Chanthaburi 22170, Thailand
[3] Khon Kaen Univ, Fac Sci, Dept Phys, Khon Kaen 40002, Thailand
[4] Khon Kaen Univ, Inst Nanomat Res & Innovat Energy IN RIE, NANOTEC KKU RNN Nanomat Res & Innovat Energy, Khon Kaen 40002, Thailand
关键词
Titanate nanotubes; Poly(vinylidene fluoride); Dielectric permittivity; Loss tangent; Interfacial polarization; PHASE; ADSORPTION; FILMS; PVDF;
D O I
10.1016/j.mtla.2024.102013
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The dielectric properties of polymer nanocomposites based on a poly(vinylidene fluoride) (PVDF) matrix, filled with a one-dimensional nanostructure of titanate nanotubes (TNTs), were investigated. These studies demonstrated significant improvements in the energy storage capability of the application. The TNTs were synthesized through an alkali hydrothermal treatment method at 130 degrees C for 24 h, using a 10 M NaOH solution. The TNTs exhibited a large dielectric permittivity of approximately 1.2 x 10(4) with a low loss tangent of approximately 0.12 at 1 kHz and 25 degrees C. TNTs/PVDF polymer nanocomposites were studied and fabricated using liquid phase-assisted dispersion and hot-pressing methods. By introducing TNTs into the PVDF polymer, both the dielectric permittivity and loss tangent increased. Notably, the polymer nanocomposite containing 50 wt. % TNTs exhibited a dielectric permittivity of 5.3 x 10(3) at 1 kHz, which is similar to 530 times greater than that of pure PVDF (10.78), while the loss tangent remained at 0.572. The low-frequency dielectric permittivity increased with an increase in relative humidity from 50 to 95 % due to enhanced interfacial polarization at the surface and electrode interface. However, at frequencies greater than 1 kHz, the dielectric permittivity was independent of relative humidity. The improvement in the enhanced dielectric permittivity of polymer-based nanocomposites with incorporated TNTs was ascribed to these factors.
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页数:7
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