Center on Nanoenergy Research, School of Physical Science and Technology, Guangxi University, Nanning 530004, China.
CAS Center for Excellence in Nanoscience, Beijing Key Laboratory of Micro-Nano Energy and Sensor, Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing 101400, China.
Sensors (Basel). 2022 Jan 27;22(3):975. doi: 10.3390/s22030975.
The wearable tactile sensors have attracted great attention in the fields of intelligent robots, healthcare monitors and human-machine interactions. To create active tactile sensors that can directly generate electrical signals in response to stimuli from the surrounding environment is of great significance. Triboelectric nanogenerators (TENGs) have the advantages of high sensitivity, fast response speed and low cost that can convert any type of mechanical motion in the surrounding environment into electrical signals, which provides an effective strategy to design the self-powered active tactile sensors. Here, an overview of the development in TENGs as tactile stimulators for multifunctional sensing and artificial synapses is systematically introduced. Firstly, the applications of TENGs as tactile stimulators in pressure, temperature, proximity sensing, and object recognition are introduced in detail. Then, the research progress of TENGs as tactile stimulators for artificial synapses is emphatically introduced, which is mainly reflected in the electrolyte-gate synaptic transistors, optoelectronic synaptic transistors, floating-gate synaptic transistors, reduced graphene oxides-based artificial synapse, and integrated circuit-based artificial synapse and nervous systems. Finally, the challenges of TENGs as tactile stimulators for multifunctional sensing and artificial synapses in practical applications are summarized, and the future development prospects are expected.
可穿戴触觉传感器在智能机器人、医疗保健监测和人机交互等领域引起了极大关注。创造能够直接产生电信号以响应周围环境刺激的主动触觉传感器具有重要意义。摩擦电纳米发电机(TENG)具有高灵敏度、快速响应速度和低成本的优势,可以将周围环境中的任何类型的机械运动转换为电信号,这为设计自供电主动触觉传感器提供了一种有效的策略。本文系统地介绍了 TENG 作为触觉刺激器在多功能传感和人工突触方面的发展。首先,详细介绍了 TENG 作为触觉刺激器在压力、温度、接近感应和物体识别方面的应用。然后,着重介绍了 TENG 作为人工突触的触觉刺激器的研究进展,主要体现在电解质门控突触晶体管、光电突触晶体管、浮栅突触晶体管、基于还原氧化石墨烯的人工突触和基于集成电路的人工突触和神经系统。最后,总结了 TENG 作为触觉刺激器在多功能传感和人工突触实际应用中的挑战,并对未来的发展前景进行了展望。