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湿度自适应防冻水凝胶传感器,用于智能控制和人机交互。

Humidity Adaptive Antifreeze Hydrogel Sensor for Intelligent Control and Human-Computer Interaction.

机构信息

College of Medicine and Biological Information Engineering, Northeastern University, Shenyang, 110169, China.

Foshan Graduate School of Innovation, Northeastern University, Foshan, 528300, China.

出版信息

Small. 2024 Jun;20(24):e2308092. doi: 10.1002/smll.202308092. Epub 2024 Jan 2.

Abstract

Conductive hydrogels have emerged as ideal candidate materials for strain sensors due to their signal transduction capability and tissue-like flexibility, resembling human tissues. However, due to the presence of water molecules, hydrogels can experience dehydration and low-temperature freezing, which greatly limits the application scope as sensors. In this study, an ionic co-hybrid hydrogel called PBLL is proposed, which utilizes the amphoteric ion betaine hydrochloride (BH) in conjunction with hydrated lithium chloride (LiCl) thereby achieving the function of humidity adaptive. PBLL hydrogel retains water at low humidity (<50%) and absorbs water from air at high humidity (>50%) over the 17 days of testing. Remarkably, the PBLL hydrogel also exhibits strong anti-freezing properties (-80 °C), high conductivity (8.18 S m at room temperature, 1.9 S m at -80 °C), high gauge factor (GF approaching 5.1). Additionally, PBLL hydrogels exhibit strong inhibitory effects against Escherichia coli (E. coli) and Staphylococcus aureus (S. aureus), as well as biocompatibility. By synergistically integrating PBLL hydrogel with wireless transmission and Internet of Things (IoT) technologies, this study has accomplished real-time human-computer interaction systems for sports training and rehabilitation evaluation. PBLL hydrogel exhibits significant potential in the fields of medical rehabilitation, artificial intelligence (AI), and the Internet of Things (IoT).

摘要

导电水凝胶因其信号转导能力和类似组织的柔韧性而成为应变传感器的理想候选材料,类似于人体组织。然而,由于水分子的存在,水凝胶会经历脱水和低温冻结,这极大地限制了其作为传感器的应用范围。在这项研究中,提出了一种称为 PBLL 的离子共杂水凝胶,它利用两性离子甜菜碱盐酸盐(BH)与水合氯化锂(LiCl)结合,从而实现湿度自适应功能。PBLL 水凝胶在低湿度(<50%)下保持水分,并在高湿度(>50%)下从空气中吸收水分,在 17 天的测试中。值得注意的是,PBLL 水凝胶还具有很强的抗冻性能(-80°C)、高导电性(室温下为 8.18 S m,-80°C 下为 1.9 S m)、高应变系数(接近 5.1)。此外,PBLL 水凝胶对大肠杆菌(E. coli)和金黄色葡萄球菌(S. aureus)具有很强的抑制作用,同时具有生物相容性。通过将 PBLL 水凝胶与无线传输和物联网(IoT)技术协同集成,本研究实现了用于运动训练和康复评估的实时人机交互系统。PBLL 水凝胶在医疗康复、人工智能(AI)和物联网(IoT)等领域具有重要的应用潜力。

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