School of Electrical and Computer Engineering, College of Engineering, University of Tehran, 1417614411 Tehran, Iran.
Department of Engineering, Loyola University Maryland, Baltimore, Maryland 21210, United States.
ACS Appl Mater Interfaces. 2024 Feb 21;16(7):9506-9516. doi: 10.1021/acsami.3c17419. Epub 2024 Feb 12.
In a world increasingly driven by data, wearable triboelectric nanogenerators (TENGs) offer a convenient way to monitor and collect information about human body motions. To meet the demands of the large-scale production of wearable TENGs, material selection to realize a high conversion efficiency and simplify the fabrication process remains a challenge. To address these issues, we present a simple-structured wearable printed arc-shaped triboelectric sensor (PATS) for finger motion detection by leveraging inkjet printing technology. In this regard, pressure sensors composed of diverse materials based on dielectric-dielectric and metal-dielectric structures in contact-separation mode were fabricated and compared. Thanks to the unique characteristics of the silver nanoparticle (Ag-NP)-printed layer and silicon rubber (SR), the SR-Ag PATS shows a high peak-to-peak voltage of 14.15 V and a short-circuit current of 0.78 μA. The proposed sensor with the capability of accurately identifying finger motions at various bending angles suggests promising application potential in glove-based human-machine interface (HMI) systems.
在一个日益由数据驱动的世界中,可穿戴摩擦纳米发电机(TENG)为监测和收集人体运动信息提供了一种便捷的方式。为了满足可穿戴 TENG 大规模生产的需求,实现高效率转换和简化制造工艺的材料选择仍然是一个挑战。为了解决这些问题,我们提出了一种简单结构的可穿戴印刷弧形摩擦电传感器(PATS),用于通过喷墨打印技术检测手指运动。在这方面,我们基于接触分离模式的介电-介电和金属-介电结构,利用喷墨打印技术制造并比较了由不同材料组成的压力传感器。得益于银纳米颗粒(Ag-NP)打印层和硅橡胶(SR)的独特特性,SR-Ag PATS 表现出 14.15 V 的高峰值-峰值电压和 0.78 μA 的短路电流。该传感器具有在各种弯曲角度下准确识别手指运动的能力,有望在基于手套的人机界面(HMI)系统中得到应用。