Yang Mengyan, Tian Xiao, Hua Tao
Nanotechnology Center, School of Fashion and Textiles, The Hong Kong Polytechnic University, Hung Hom, Kowloon 999077, Hong Kong.
ACS Appl Mater Interfaces. 2023 Mar 8;15(9):11802-11811. doi: 10.1021/acsami.2c22331. Epub 2023 Feb 21.
Nowadays, with the intensification of the aging society, the demand for elderly care and medical services is increasing and the elderly care and health systems are facing serious challenges. Therefore, it is imperative to develop a smart elderly care system to achieve real-time interaction between the elderly, the community, and medical personnel and to improve the efficiency of caring for the elderly. Here, we prepared ionic hydrogels with stable properties of high mechanical strength, high electrical conductivity, and high transparency by the one-step immersion method and used them in self-powered sensors for smart elderly care systems. The complexation of Cu ions with polyacrylamide (PAAm) endows ionic hydrogels with excellent mechanical properties and electrical conductivity. Meanwhile, potassium sodium tartrate prevents the generated complex ions from precipitating into precipitates, thus ensuring the transparency of the ionic conductive hydrogel. After optimization, the transparency, tensile strength, elongation at break, and conductivity of the ionic hydrogel reached 94.1% at 445 nm, 192 kPa, 1130%, and 6.25 S/m, respectively. By processing and coding the collected triboelectric signals, a self-powered human-machine interaction system attached to the finger of the elderly was developed. The elderly can complete the transmission of distress and basic needs by simply bending their fingers, greatly reducing the pressure of inadequate medical care in an aging society. This work demonstrates the value of self-powered sensors in the field of smart elderly care systems, showing a wide implication in human-computer interface.
如今,随着老龄化社会的加剧,老年护理和医疗服务的需求不断增加,老年护理和健康系统面临严峻挑战。因此,开发智能老年护理系统以实现老年人、社区和医护人员之间的实时互动并提高老年护理效率势在必行。在此,我们通过一步浸渍法制备了具有高机械强度、高电导率和高透明度等稳定性能的离子水凝胶,并将其应用于智能老年护理系统的自供电传感器中。铜离子与聚丙烯酰胺(PAAm)的络合赋予离子水凝胶优异的机械性能和电导率。同时,酒石酸钠钾可防止生成的络合离子沉淀成沉淀物,从而确保离子导电水凝胶的透明度。经过优化,离子水凝胶在445nm处的透明度、拉伸强度、断裂伸长率和电导率分别达到94.1%、192kPa、1130%和6.25S/m。通过对采集到的摩擦电信号进行处理和编码,开发了一种附着在老年人手指上的自供电人机交互系统。老年人只需弯曲手指就能完成求救和基本需求的传递,大大减轻了老龄化社会中医疗护理不足的压力。这项工作展示了自供电传感器在智能老年护理系统领域的价值,在人机界面方面具有广泛的应用前景。