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聚偏二氟乙烯中不同晶体微区的电响应

Electrical Response of Different Crystalline Microregions in Poly(vinylidene fluoride).

作者信息

Su Mengyue, Zhou Jun, Chen Yuqing, Wang Yilong, Jin Gan, Wang Haiyang, Zhou Jiacheng, Pang Xiaoyue, Lv Zepeng, Wu Kai

机构信息

Center of Nanomaterials for Renewable Energy, State Key Laboratory of Electrical Insulation and Power Equipment, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Nanomaterials (Basel). 2024 Sep 26;14(19):1555. doi: 10.3390/nano14191555.

Abstract

The crystal structure has a great influence on the dielectric and piezoelectric performance of poly(vinylidene fluoride) (PVDF). In this work, we prepared PVDF films with two typical crystalline phases (α and β). In situ Kelvin probe force microscopy (KPFM) and Piezoelectric force microscopy (PFM) were employed to investigate the responses of different PVDF crystalline phases to charge mobility, polarization, and piezoelectric properties. We used a homemade Kelvin probe force microscope (KPFM) to inject charges into the two crystalline phases to investigate the differences in the response of different crystalline phases of PVDF to electrical excitation on a microscopic scale. It was found that the α-phase has a lower charge injection barrier and is more susceptible to charge injection and that the α-phase is accompanied by a faster charge dissipation rate, which makes it easier to accumulate charge at the interface between the α-phase and β-phase PVDF. Moreover, the PFM polarization manipulation showed no change in the amplitude and phase diagram of the α-phase under ±10 V bias. In contrast, the β-phase showed a clear polarization reversal phenomenon and a significant increase in piezoelectric amplitude, which is consistent with its polar intrinsic properties. This study provides valuable insights into the multiphase contributions and a reference for designing advanced PVDF dielectrics.

摘要

晶体结构对聚偏氟乙烯(PVDF)的介电和压电性能有很大影响。在本工作中,我们制备了具有两种典型晶相(α相和β相)的PVDF薄膜。采用原位开尔文探针力显微镜(KPFM)和压电 force显微镜(PFM)来研究不同PVDF晶相对电荷迁移率、极化和压电性能的响应。我们使用自制的开尔文探针力显微镜(KPFM)向两种晶相中注入电荷,以在微观尺度上研究PVDF不同晶相对电激发响应的差异。结果发现,α相具有较低的电荷注入势垒,更容易受到电荷注入的影响,并且α相伴随着更快的电荷耗散速率,这使得电荷更容易在α相和β相PVDF的界面处积累。此外,PFM极化操作显示,在±10 V偏压下,α相的振幅和相图没有变化。相比之下,β相表现出明显的极化反转现象和压电振幅的显著增加,这与其极性本征特性一致。本研究为多相贡献提供了有价值的见解,并为设计先进的PVDF电介质提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e77/11478445/5f8ca0e8c906/nanomaterials-14-01555-g001.jpg

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