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用于可穿戴设备的碳纳米纤维基复合材料制造的最新进展。

Recent advance in the fabrication of carbon nanofiber-based composite materials for wearable devices.

作者信息

Guo Lei, Wan Keming, Liu Bin, Wang Yan, Wei Gang

机构信息

Institute of Biomedical Engineering, College of Life Science, Qingdao University, Qingdao 266071, People's Republic of China.

College of Chemistry and Chemical Engineering, Qingdao University, Qingdao 266071, People's Republic of China.

出版信息

Nanotechnology. 2021 Aug 13;32(44). doi: 10.1088/1361-6528/ac18d5.

Abstract

Carbon nanofibers (CNFs) exhibit the advantages of high mechanical strength, good conductivity, easy production, and low cost, which have shown wide applications in the fields of materials science, nanotechnology, biomedicine, tissue engineering, sensors, wearable electronics, and other aspects. To promote the applications of CNF-based nanomaterials in wearable devices, the flexibility, electronic conductivity, thickness, weight, and bio-safety of CNF-based films/membranes are crucial. In this review, we present recent advances in the fabrication of CNF-based composite nanomaterials for flexible wearable devices. For this aim, firstly we introduce the synthesis and functionalization of CNFs, which promote the optimization of physical, chemical, and biological properties of CNFs. Then, the fabrication of two-dimensional and three-dimensional CNF-based materials are demonstrated. In addition, enhanced electric, mechanical, optical, magnetic, and biological properties of CNFs through the hybridization with other functional nanomaterials by synergistic effects are presented and discussed. Finally, wearable applications of CNF-based materials for flexible batteries, supercapacitors, strain/piezoresistive sensors, bio-signal detectors, and electromagnetic interference shielding devices are introduced and discussed in detail. We believe that this work will be beneficial for readers and researchers to understand both structural and functional tailoring of CNFs, and to design and fabricate novel CNF-based flexible and wearable devices for advanced applications.

摘要

碳纳米纤维(CNFs)具有机械强度高、导电性好、易于生产和成本低等优点,已在材料科学、纳米技术、生物医学、组织工程、传感器、可穿戴电子产品等领域得到广泛应用。为了促进基于CNF的纳米材料在可穿戴设备中的应用,基于CNF的薄膜/膜的柔韧性、电子导电性、厚度、重量和生物安全性至关重要。在这篇综述中,我们介绍了用于柔性可穿戴设备的基于CNF的复合纳米材料制备的最新进展。为此,首先我们介绍了CNFs的合成和功能化,这促进了CNFs物理、化学和生物学性能的优化。然后,展示了二维和三维基于CNF的材料的制备。此外,还介绍并讨论了通过与其他功能纳米材料协同杂交增强CNFs的电学、力学、光学、磁学和生物学性能。最后,详细介绍并讨论了基于CNF的材料在柔性电池、超级电容器、应变/压阻传感器、生物信号探测器和电磁干扰屏蔽设备等可穿戴应用中的情况。我们相信这项工作将有助于读者和研究人员了解CNFs的结构和功能剪裁,并设计和制造用于先进应用的新型基于CNF的柔性和可穿戴设备。

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