材料科学
自愈
电极
纳米技术
自愈材料
触觉传感器
计算机科学
人工智能
医学
化学
替代医学
物理化学
病理
机器人
作者
Liguo Qin,Wentao Xia,Yuhao Wu,Xiaodong Huang,Ange Nsilani Kouediatouka,Hang Li,Mingwei Ding,Fagla Jules Mawignon,Shan Lu,Kaiyan Cao,Peiping Yang,Yin Zhang,Guangneng Dong
标识
DOI:10.1021/acsami.4c14518
摘要
Tactile-based sensing technology represents one of the most promising methods for interacting with their surrounding environment. Consequently, flexible tactile sensing has garnered significant attention from researchers worldwide. In this study, triboelectricity and piezoelectricity were combined to propose a multifunctional self-powered tactile sensor (MSPTS). Notably, new and innovative self-healing electrodes were embedded and synthesized from HPDMS (poly(dimethylsiloxane)) and boric acid in the MSPTS, MSPTS demonstrated a linear detection range of 0.25-5 kPa with a sensitivity of 246.28 mV/kPa, indicating substantial improvements in sensor sensitivity, output performance, and anti-interference capability. Our method of forming hydrogen bonds between a self-healing material (SHM) and a liquid metal (LM) effectively addressed the issue of LM leakage within the flexible matrix under pressure, thus preventing sensor failure. The borate dynamic bonding conferred self-healing properties to the electrode when it was damaged. The MSPTS was successfully applied to pressure detection, material identification, and human body movement detection, significantly broadening the application range of flexible electronic devices.
科研通智能强力驱动
Strongly Powered by AbleSci AI