纳米银/纳米纤维素复合抗菌双网水凝胶的制备及应用。

IF 2.3 4区 医学 Q3 ENGINEERING, BIOMEDICAL
Qinwen Wang, Zhuoyan Xie, Aimin Tang, Wenjin Chen, Yingyao Liu
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引用次数: 0

摘要

随着科学技术的进步,基于抗菌导电水凝胶制备的智能可穿戴设备在运动检测、医疗监测、人机界面和软机器人等领域有着重要的应用。在满足抗菌导电性能的基础上,水凝胶还需要提高机械性能,以适应更多的可穿戴设备应用。本研究在纳米银/纳米纤维素复合抗菌菌反应水凝胶(AP水凝胶)的基础上,引入甘油和琼脂,通过热引发和溶胶凝胶两步成型的方法,构建纳米银/纳米纤维素复合抗菌菌反应双网络水凝胶(APA-DN水凝胶),并将其封装在菌株响应传感器中。APA-DN水凝胶的拉伸断裂应变和应力可达到2182.0 mm。APA-DN水凝胶的拉伸断裂应变和应力可达到2182.71%和279.76 kPa,弹性模量和韧性模量可达到36.35 kPa和2772.98 kJ/m3,从而在AP水凝胶的基础上实现了增强的力学性能。在100%应变循环下,APA-DN水凝胶传感器的相对电阻稳定在0-120%范围内,保持了稳定的应变响应重复性和耐久性。APA-DN水凝胶在监测手部和头部运动时能够输出稳定且可重复的电信号,未来有望通过对反应信号的收集和分类应用于人类行为检测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preparation and application of nanosilver/nanocellulose composite antimicrobial strain-responsive dual network hydrogels.

With the progress of science and technology, smart wearable devices prepared based on antimicrobial conductive hydrogels have come to have important applications in motion detection, medical monitoring, human-machine interface and soft robotics. On the basis of satisfying the performance of antimicrobial conductive, hydrogels also need to improve the mechanical properties to adapt to more wearable device applications. In this study, glycerol and agar were introduced on the basis of nanosilver/nanocellulose composite antimicrobial strain-responsive hydrogels (AP hydrogels), and nanosilver/nanocellulose composite antimicrobial strain-responsive dual-network hydrogel (APA-DN hydrogel) could be constructed by a two-step moulding method of thermal initiation and sol-gelation, and encapsulated into a strain-responsive sensor. Tensile fracture strain and stress of the APA-DN hydrogel could reach that concomitant with an elongation of 2182.0 mm. The tensile fracture strain and stress of the APA-DN hydrogel can reach 2182.71% and 279.76 kPa, and the modulus of elasticity and toughness can reach 36.35 kPa and 2772.98 kJ/m3, thereby realising enhanced mechanical properties on the basis of the AP hydrogel. The relative resistance of the APA-DN hydrogel sensors was stable in the range of 0-120% under 100% strain cycling, maintaining stable repeatability and durability of strain response. The APA-DN hydrogels are capable of outputting stable and reproducible electrical signals in the monitoring of hand and head movements, and they are expected to be applied in human behaviour detection by collecting and classifying the response signals in the future.

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来源期刊
Journal of Biomaterials Applications
Journal of Biomaterials Applications 工程技术-材料科学:生物材料
CiteScore
5.10
自引率
3.40%
发文量
144
审稿时长
1.5 months
期刊介绍: The Journal of Biomaterials Applications is a fully peer reviewed international journal that publishes original research and review articles that emphasize the development, manufacture and clinical applications of biomaterials. Peer-reviewed articles by biomedical specialists from around the world cover: New developments in biomaterials, R&D, properties and performance, evaluation and applications Applications in biomedical materials and devices - from sutures and wound dressings to biosensors and cardiovascular devices Current findings in biological compatibility/incompatibility of biomaterials The Journal of Biomaterials Applications publishes original articles that emphasize the development, manufacture and clinical applications of biomaterials. Biomaterials continue to be one of the most rapidly growing areas of research in plastics today and certainly one of the biggest technical challenges, since biomaterial performance is dependent on polymer compatibility with the aggressive biological environment. The Journal cuts across disciplines and focuses on medical research and topics that present the broadest view of practical applications of biomaterials in actual clinical use. The Journal of Biomaterial Applications is devoted to new and emerging biomaterials technologies, particularly focusing on the many applications which are under development at industrial biomedical and polymer research facilities, as well as the ongoing activities in academic, medical and applied clinical uses of devices.
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