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用于先进应用的基于聚偏二氟乙烯的电活性结构。

Electroactive poly(vinylidene fluoride)-based structures for advanced applications.

机构信息

Centro de Física, Universidade do Minho, Campus de Gualtar, Braga, Portugal.

Centro de Engenharia Biológica (CEB), Universidade do Minho, Campus de Gualtar, Braga, Portugal.

出版信息

Nat Protoc. 2018 Apr;13(4):681-704. doi: 10.1038/nprot.2017.157. Epub 2018 Mar 15.

DOI:10.1038/nprot.2017.157
PMID:29543796
Abstract

Poly(vinylidene fluoride) (PVDF) and its copolymers are the polymers with the highest dielectric constants and electroactive responses, including piezoelectric, pyroelectric and ferroelectric effects. This semicrystalline polymer can crystallize in five different forms, each related to a different chain conformation. Of these different phases, the β phase is the one with the highest dipolar moment and the highest piezoelectric response; therefore, it is the most interesting for a diverse range of applications. Thus, a variety of processing methods have been developed to induce the formation of the polymer β phase. In addition, PVDF has the advantage of being easily processable, flexible and low-cost. In this protocol, we present a number of reproducible and effective methods to produce β-PVDF-based morphologies/structures in the form of dense films, porous films, 3D scaffolds, patterned structures, fibers and spheres. These structures can be fabricated by different processing techniques, including doctor blade, spin coating, printing technologies, non-solvent-induced phase separation (NIPS), temperature-induced phase separation (TIPS), solvent-casting particulate leaching, solvent-casting using a 3D nylon template, freeze extraction with a 3D poly(vinyl alcohol) (PVA) template, replica molding, and electrospinning or electrospray, with the fabrication method depending on the desired characteristics of the structure. The developed electroactive structures have shown potential to be used in a wide range of applications, including the formation of sensors and actuators, in biomedicine, for energy generation and storage, and as filtration membranes.

摘要

聚偏二氟乙烯(PVDF)及其共聚物是介电常数和电活性响应最高的聚合物,包括压电、热释电和铁电效应。这种半结晶聚合物可以结晶成五种不同的形式,每种形式都与不同的链构象有关。在这些不同的相中,β 相具有最高的偶极矩和最高的压电响应;因此,它是最有趣的,适用于各种应用。因此,已经开发了多种加工方法来诱导聚合物β相的形成。此外,PVDF 具有易于加工、柔韧性好和成本低的优点。在本方案中,我们提出了一些可重复和有效的方法,以生产致密膜、多孔膜、3D 支架、图案结构、纤维和球体形式的基于β-PVDF 的形态/结构。这些结构可以通过不同的加工技术制造,包括刮刀、旋涂、印刷技术、非溶剂致相分离(NIPS)、温度致相分离(TIPS)、溶剂浇铸颗粒浸出、使用 3D 尼龙模板的溶剂浇铸、使用 3D 聚乙烯醇(PVA)模板的冷冻提取、复制成型和静电纺丝或静电喷雾,具体的制造方法取决于结构的所需特性。所开发的电活性结构显示出在广泛的应用中使用的潜力,包括传感器和执行器的形成、在生物医学中的应用、用于能量产生和存储、以及作为过滤膜。

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