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淀粉接枝丙烯酸/磁性纳米几丁质自修复铁凝胶作为柔性软应变传感器。

Starch-g-Acrylic Acid/Magnetic Nanochitin Self-Healing Ferrogels as Flexible Soft Strain Sensors.

机构信息

School of Engineering, Deakin University, Geelong 3216, Australia.

出版信息

Sensors (Basel). 2023 Jan 19;23(3):1138. doi: 10.3390/s23031138.

Abstract

Mechanically robust ferrogels with high self-healing ability might change the design of soft materials used in strain sensing. Herein, a robust, stretchable, magneto-responsive, notch insensitive, ionic conductive nanochitin ferrogel was fabricated with both autonomous self-healing and needed resilience for strain sensing application without the need for additional irreversible static chemical crosslinks. For this purpose, ferric (III) chloride hexahydrate and ferrous (II) chloride as the iron source were initially co-precipitated to create magnetic nanochitin and the co-precipitation was confirmed by FTIR and microscopic images. After that, the ferrogels were fabricated by graft copolymerisation of acrylic acid-g-starch with a monomer/starch weight ratio of 1.5. Ammonium persulfate and magnetic nanochitin were employed as the initiator and crosslinking/nano-reinforcing agents, respectively. The ensuing magnetic nanochitin ferrogel provided not only the ability to measure strain in real-time under external magnetic actuation but also the ability to heal itself without any external stimulus. The ferrogel may also be used as a stylus for a touch-screen device. Based on our findings, our research has promising implications for the rational design of multifunctional hydrogels, which might be used in applications such as flexible and soft strain sensors, health monitoring, and soft robotics.

摘要

具有高自修复能力的机械坚固铁凝胶可能会改变用于应变传感的软材料的设计。本文制备了一种坚固、可拉伸、磁响应、对切口不敏感、离子导电的纳米甲壳素铁凝胶,具有自主自修复能力和应变传感应用所需的弹性,而无需额外的不可逆静态化学交联。为此,首先将六水合三氯化铁和二氯化亚铁共同沉淀以形成磁性纳米甲壳素,并通过傅里叶变换红外光谱和微观图像确认共沉淀。之后,通过单体/淀粉重量比为 1.5 的丙烯酸-g-淀粉接枝共聚来制备铁凝胶。过硫酸铵和磁性纳米甲壳素分别作为引发剂和交联/纳米增强剂。所得磁性纳米甲壳素铁凝胶不仅提供了在外磁场作用下实时测量应变的能力,而且无需任何外部刺激即可自我修复。该铁凝胶还可用作触摸屏设备的触笔。基于我们的发现,我们的研究对多功能水凝胶的合理设计具有重要意义,这种水凝胶可能用于柔性和软应变传感器、健康监测和软机器人等应用。

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