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用于智能传感器和柔性超级电容器的多功能淀粉基导电水凝胶。

Multifunctional starch-based conductive hydrogels for smart sensors and flexible supercapacitors.

作者信息

Ma Jie, Zhu Jiading, Zhou Shixiang, Zhao Cheng, Liu Cong, Xin Zhe, Cai Jiantao, He Jian, Feng Peizhong, Guo Litong, Tao Xueyu

机构信息

School of Materials Science and Physics, China University of Mining and Technology, Xuzhou 221116, Jiangsu, China.

Department of Materials Science and Engineering, National University of Singapore, 117575, Singapore.

出版信息

Int J Biol Macromol. 2025 Apr;302:140430. doi: 10.1016/j.ijbiomac.2025.140430. Epub 2025 Jan 28.

Abstract

In order to overcome harsh working environments and meet eco-friendly demands, the development of environmentally tolerant and recyclable hydrogels is necessary. Herein, multifunctional conductive hydrogel was successfully constructed by introducing starch into polyvinyl alcohol (PVA)/glycerin (Gly)/lithium chloride (LiCl) hydrogel. Starch is rich in active sites (-OH groups) that provide a variety of physical interactions for the construction of polymer hydrogels. PSGL hydrogel exhibited high conductivity (40.65 mS cm) and outstanding anti-freezing properties (-40 °C). Meanwhile, PSGL hydrogel retained 82.6 % initial weight after 30 days of exposure and 80 % conductivity retention after recycling. The mechanism of Gly and LiCl in inhibiting the freezing and dehydration of hydrogels was further revealed by density functional theory simulations. Moreover, PSGL hydrogel-based sensors had a satisfactory sensitivity (GF = 1.68 at 0-100 %) and accurately detected human motion. Further, by linking the PSGL hydrogel sensors with Internet of Things technology, human-computer interaction was accomplished. Besides, the PSGL hydrogel-based supercapacitors had a specific capacitance of 120.0 mF cm (0.2 mA cm) and 98.17 % capacitance retention after 10,000 cycles. PSGL hydrogel-based devices also worked steadily in extreme environments. Therefore, the PSGL hydrogels have great potential for flexible electronics, soft robotics, energy storage etc.

摘要

为了克服恶劣的工作环境并满足环保需求,开发耐环境且可回收的水凝胶是必要的。在此,通过将淀粉引入聚乙烯醇(PVA)/甘油(Gly)/氯化锂(LiCl)水凝胶中,成功构建了多功能导电水凝胶。淀粉富含活性位点(-OH基团),为聚合物水凝胶的构建提供了多种物理相互作用。PSGL水凝胶表现出高电导率(40.65 mS cm)和出色的抗冻性能(-40°C)。同时,PSGL水凝胶在暴露30天后保留了82.6%的初始重量,回收后电导率保留率为80%。密度泛函理论模拟进一步揭示了Gly和LiCl抑制水凝胶冻结和脱水的机制。此外,基于PSGL水凝胶的传感器具有令人满意的灵敏度(在0-100%时GF = 1.68),并能准确检测人体运动。此外,通过将PSGL水凝胶传感器与物联网技术相连,实现了人机交互。此外,基于PSGL水凝胶的超级电容器在0.2 mA cm时的比电容为120.0 mF cm,在10000次循环后电容保留率为98.17%。基于PSGL水凝胶的器件在极端环境中也能稳定工作。因此,PSGL水凝胶在柔性电子、软机器人、能量存储等方面具有巨大潜力。

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