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高性能聚偏二氟乙烯/多巴胺核/壳压电纳米纤维及其在生物医学传感器中的应用。

High-Performance Poly(vinylidene difluoride)/Dopamine Core/Shell Piezoelectric Nanofiber and Its Application for Biomedical Sensors.

机构信息

School of Chemical Engineering, Nanjing University of Science and Technology, #200 Xiaolingwei, Nanjing, 210094, P. R. China.

Department of Materials Science and Engineering, University of Wisconsin-Madison, Madison, WI, 53706, USA.

出版信息

Adv Mater. 2021 Jan;33(3):e2006093. doi: 10.1002/adma.202006093. Epub 2020 Dec 4.

Abstract

Fabrication of soft piezoelectric nanomaterials is essential for the development of wearable and implantable biomedical devices. However, a big challenge in this soft functional material development is to achieve a high piezoelectric property with long-term stability in a biological environment. Here, a one-step strategy for fabricating core/shell poly(vinylidene difluoride) (PVDF)/dopamine (DA) nanofibers (NFs) with a very high β-phase content and self-aligned polarization is reported. The self-assembled core/shell structure is believed essential for the formation and alignment of β-phase PVDF, where strong intermolecular interaction between the NH groups on DA and the CF groups on PVDF is responsible for aligning the PVDF chains and promoting β-phase nucleation. The as-received PVDF/DA NFs exhibit significantly enhanced piezoelectric performance and excellent stability and biocompatibility. An all-fiber-based soft sensor is fabricated and tested on human skin and in vivo in mice. The devices show a high sensitivity and accuracy for detecting weak physiological mechanical stimulation from diaphragm motions and blood pulsation. This sensing capability offers great diagnostic potential for the early assessment and prevention of cardiovascular diseases and respiratory disorders.

摘要

制备柔软的压电纳米材料对于可穿戴和可植入生物医学设备的发展至关重要。然而,在这种软功能材料的开发中,一个主要挑战是在生物环境中实现高压电性能和长期稳定性。在此,报道了一种一步策略,用于制备具有高β相含量和自对准极化的核/壳聚偏二氟乙烯(PVDF)/多巴胺(DA)纳米纤维(NFs)。自组装的核/壳结构被认为是β相 PVDF 形成和取向的关键,其中 DA 上的 NH 基团和 PVDF 上的 CF 基团之间的强分子间相互作用负责对 PVDF 链进行取向并促进β相成核。所得到的 PVDF/DA NFs 表现出显著增强的压电性能以及优异的稳定性和生物相容性。基于全纤维的软传感器在人体皮肤和小鼠体内进行了测试。这些器件对检测膈肌运动和血液脉动等弱生理机械刺激具有很高的灵敏度和准确性。这种传感能力为心血管疾病和呼吸系统疾病的早期评估和预防提供了巨大的诊断潜力。

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