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通过压电力显微镜和数值模拟研究单根电纺聚丙烯腈超细纤维的压电产量

Piezoelectric Yield of Single Electrospun Poly(acrylonitrile) Ultrafine Fibers Studied by Piezoresponse Force Microscopy and Numerical Simulations.

作者信息

Montorsi Margherita, Zavagna Lorenzo, Scarpelli Lorenzo, Azimi Bahareh, Capaccioli Simone, Danti Serena, Labardi Massimiliano

机构信息

CNR-IPCF, Pisa Unit, Largo Pontecorvo 3, 56127 Pisa, Italy.

PEGASO Doctoral School in Life Sciences, University of Siena, Via Banchi di Sotto 55, 53100 Siena, Italy.

出版信息

Polymers (Basel). 2024 May 7;16(10):1305. doi: 10.3390/polym16101305.

Abstract

Quantitative converse piezoelectric coefficient () mapping of polymer ultrafine fibers of poly(acrylonitrile) (PAN), as well as of poly(vinylidene fluoride) (PVDF) as a reference material, obtained by rotating electrospinning, was carried out by piezoresponse force microscopy in the constant-excitation frequency-modulation mode (CE-FM-PFM). PFM mapping of single fibers reveals their piezoelectric activity and provides information on its distribution along the fiber length. Uniform behavior is typically observed on a length scale of a few micrometers. In some cases, variations with sinusoidal dependence along the fiber are reported, compatibly with a possible twisting around the fiber axis. The observed features of the piezoelectric yield have motivated numerical simulations of the surface displacement in a piezoelectric ultrafine fiber concerned by the electric field generated by biasing of the PFM probe. Uniform alignment of the piezoelectric axis along the fiber would comply with the uniform but strongly variable values observed, and sinusoidal variations were occasionally found on the fibers laying on the conductive substrate. Furthermore, in the latter case, numerical simulations show that the piezoelectric tensor's shear terms should be carefully considered in estimations since they may provide a remarkably different contribution to the overall deformation profile.

摘要

通过旋转静电纺丝制备的聚丙烯腈(PAN)聚合物超细纤维以及作为参考材料的聚偏二氟乙烯(PVDF)的定量逆压电系数()映射,是在恒定激励调频模式(CE-FM-PFM)下通过压电力显微镜进行的。单纤维的PFM映射揭示了它们的压电活性,并提供了其沿纤维长度分布的信息。通常在几微米的长度尺度上观察到均匀的行为。在某些情况下,报告了沿纤维具有正弦依赖性的变化,这与围绕纤维轴的可能扭曲相一致。压电屈服的观察特征促使对受PFM探针偏置产生的电场影响的压电超细纤维中的表面位移进行数值模拟。压电轴沿纤维的均匀排列将符合观察到的均匀但变化很大的值,并且在放置在导电基板上的纤维上偶尔会发现正弦变化。此外,在后一种情况下,数值模拟表明,在估计中应仔细考虑压电张量的剪切项,因为它们可能对整体变形轮廓提供显著不同的贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/feaa/11125114/384cba2aab5e/polymers-16-01305-g002.jpg

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