Polarization Modulation in PVDF During the Electric Field Rising and Falling Runs
作者:Fan Xu, Feipeng Wang, Sicheng Yan, Yu Wang · 年份:2024 · DOI:10.1109/icpadm61663.2024.10750696 · 被引用次数:1 · 研究领域:High voltage insulation and dielectric phenomena、Thin-Film Transistor Technologies、Electrostatic Discharge in Electronics
Polyvinylidene difluoride (PVDF) is a hot research topic material in the field of energy storage and conversion due to its high polarization response. However, the mechanism of the behavior of VDF dipoles under varying electric field stresses is still not well understood. Here, effect of amplitude variation of sinusoidal electric field on the dipole reorientation behavior is studied by polarization-electric field (P-E) hysteresis loops. Experimental results suggest that when the applied electric field amplitude goes from high to low, the intense reorientation at high field strengths expands the intermolecular spacing, resulting in a reduced hindrance to dipole reorientation at low field strengths, and thus increasing the polarization intensity. At 160 MV/m sinusoidal electric field, the maximum polarization intensity$(\mathrm{P}_{\max})$is increased from 4.68 to 5.32$\mu \mathrm{C}/\text{cm}^{2}$during the fall amplitude process compared to the rise amplitude process, resulting in a 20% increase in energy consumption. These findings not only deepen our understanding of the behavior mechanism of VDF dipoles but also provide useful guidance for regulating the properties of PVDF-based films.