Yu Xu, Yang Hua, Ye Zhihao, Chen Kaifeng, Yuan Ting, Dong Yabo, Xiao Rui, Wang Zongrong
State Key Laboratory of Silicon and Advanced Semiconductor Materials, School of Materials Science and Engineering, Zhejiang University, Hangzhou, Zhejiang Province, 310027, China.
School of Aeronautics and Astronautics, Zhejiang University, Hangzhou, Zhejiang Province, 310027, China.
Small. 2023 Oct;19(42):e2303095. doi: 10.1002/smll.202303095. Epub 2023 Jun 20.
Effective training is crucial for patients who need rehabilitation for achieving optimal recovery and reducing complications. Herein, a wireless rehabilitation training monitoring band with a highly sensitive pressure sensor is proposed and designed. It utilizes polyaniline@waterborne polyurethane (PANI@WPU) as a piezoresistive composite material, which is prepared via the in situ grafting polymerization of PANI on the WPU surface. WPU is designed and synthesized with tunable glass transition temperatures ranging from -60 to 0 °C. Dipentaerythritol (Di-PE) and ureidopyrimidinone (UPy) groups are introduced, endowing the material with good tensile strength (14.2 MPa), toughness (62 MJ m ), and great elasticity (low permanent deformation: 2%). Di-PE and UPy enhance the mechanical properties of WPU by increasing the cross-linking density and crystallinity. Combining the toughness of WPU and the high-density microstructure derived by hot embossing technology, the pressure sensor exhibits high sensitivity (168.1 kPa ), fast response time (32 ms), and excellent stability (10 000 cycles with 3.5% decay). In addition, the rehabilitation training monitoring band is equipped with a wireless Bluetooth module, which can be easily applied to monitor the rehabilitation training effect of patients using an applet. Therefore, this work has the potential to significantly broaden the application of WPU-based pressure sensors for rehabilitation monitoring.
有效的训练对于需要康复以实现最佳恢复和减少并发症的患者至关重要。在此,提出并设计了一种带有高灵敏度压力传感器的无线康复训练监测带。它利用聚苯胺@水性聚氨酯(PANI@WPU)作为压阻复合材料,该材料通过在WPU表面原位接枝聚合聚苯胺制备而成。WPU被设计合成,其玻璃化转变温度可调,范围为-60至0°C。引入了二季戊四醇(Di-PE)和脲嘧啶酮(UPy)基团,赋予材料良好的拉伸强度(14.2MPa)、韧性(62MJ/m)和高弹性(低永久变形:2%)。Di-PE和UPy通过增加交联密度和结晶度来提高WPU的机械性能。结合WPU的韧性和热压印技术衍生的高密度微观结构,压力传感器具有高灵敏度(168.1kPa)、快速响应时间(32ms)和出色的稳定性(10000次循环,衰减3.5%)。此外,康复训练监测带配备了无线蓝牙模块,可通过小程序轻松应用于监测患者的康复训练效果。因此,这项工作有可能显著拓宽基于WPU的压力传感器在康复监测中的应用。