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通过压电力显微镜对 PVDF/FeO 电纺纳米纤维的磁电性能进行局部探测。

Local probing of magnetoelectric properties of PVDF/FeO electrospun nanofibers by piezoresponse force microscopy.

机构信息

ARC Centre of Excellence for Electromaterials Science, Intelligent Polymer Research Institute/AIIM Faculty, Innovation Campus, Squires Way, University of Wollongong NSW 2522, Australia.

出版信息

Nanotechnology. 2017 Feb 10;28(6):065707. doi: 10.1088/1361-6528/aa5217. Epub 2017 Jan 6.

Abstract

The coupling of magnetic and electric properties in polymer-based magnetoelectric composites offers new opportunities to develop contactless electrodes, effectively without electrical connections, for less-invasive integration into devices such as energy harvesters, sensors, wearable and implantable electrodes. Understanding the macroscale-to-nanoscale conversion of the properties is important, as nanostructured and nanoscale magnetoelectric structures are increasingly fabricated. However, whilst the magnetoelectric effect at the macroscale is well established both theoretically and experimentally, it remains unclear how this effect translates to the nanoscale, or vice versa. Here, PVDF/FeO polymer-based composite nanofibers are fabricated using electrospinning to investigate their piezoelectric and magnetoelectric properties at the single nanofiber level.

摘要

聚合物基磁电复合材料中磁电性能的耦合为开发无需接触的电极提供了新的机会,这种电极无需电气连接,可更方便地集成到能量收集器、传感器、可穿戴和植入式电极等设备中。理解宏观到纳米尺度的性能转换很重要,因为越来越多的纳米结构和纳米尺度的磁电结构正在被制造出来。然而,尽管宏观尺度上的磁电效应在理论和实验上都得到了很好的证实,但它如何转化到纳米尺度,或者反之亦然,仍然不清楚。在这里,使用静电纺丝技术制备了 PVDF/FeO 聚合物基复合纳米纤维,以研究其在单根纳米纤维水平上的压电和磁电性能。

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