Collaborative Innovation Center for Nanomaterials & Devices, College of Physics , Qingdao University , Qingdao 266071 , China.
Department of Mechanical Engineering , Columbia University , New York , New York 10027 , United States.
ACS Nano. 2018 Aug 28;12(8):8588-8596. doi: 10.1021/acsnano.8b04244. Epub 2018 Aug 15.
Moravec's paradox shows that low-level sensorimotor skills are more difficult than high-level reasoning in artificial intelligence and robotics. So simplifying every sensing unit on electronic skin is critical for endowing intelligent robots with tactile and temperature sense. The human nervous system is characterized by efficient single-electrode signal transmission, ensuring the efficiency and reliability of information transmission under big data conditions. In this work, we report a sensor based on a single-electrode piezoelectric nanogenerator (SPENG) by electrospun polyvinylidene fluoride (PVDF) nanofibers that can realize steady-state sensing of pressure integrating cold/heat sensing on a single unit. Piezoelectric signals appear as square wave signals, and the thermal-sensing signals appear as pulse signals. Therefore, the two signals can be acquired by a single unit simultaneously. The SPENG overcomes the shortcoming of electronic skins based on a single-electrode triboelectric nanogenerator (STENG), which can sense only dynamic movement and cannot sense temperature variations. The new sensor configuration uses a capacitor instead of the STENG's ground wire as a potential reference, allowing it to be used for truly autonomous robots. At the same time, the traditional advantages of polymer piezoelectric materials, such as flexibility, transparency, and self-powered advantages, have also been preserved.
莫拉维克悖论表明,低水平的感觉运动技能比人工智能和机器人学中的高级推理更难。因此,简化电子皮肤上的每个传感单元对于赋予智能机器人触觉和温度感知能力至关重要。人类神经系统的特点是高效的单电极信号传输,确保了大数据条件下信息传输的效率和可靠性。在这项工作中,我们报告了一种基于单电极压电纳米发电机(SPENG)的传感器,该传感器由电纺聚偏二氟乙烯(PVDF)纳米纤维制成,可在单个单元上实现压力的稳态感应,并集成冷/热感应。压电信号表现为方波信号,而热感应信号表现为脉冲信号。因此,这两个信号可以通过单个单元同时采集。SPENG 克服了基于单电极摩擦纳米发电机(STENG)的电子皮肤的缺点,后者只能感应动态运动,无法感应温度变化。新的传感器配置使用电容器代替 STENG 的接地线作为电势参考,使其能够用于真正的自主机器人。同时,聚合物压电材料的传统优势,如柔韧性、透明度和自供电优势,也得以保留。