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用于机器人皮肤和人机交互的可拉伸全向应变不敏感电子手套

Stretchable and All-Directional Strain-Insensitive Electronic Glove for Robotic Skins and Human-Machine Interfacing.

作者信息

Sharma Sudeep, Pradhan Gagan Bahadur, Jeong Seonghoon, Zhang Shipeng, Song Hyesu, Park Jae Yeong

机构信息

Department of Electronic Engineering, Kwangwoon University, 447-1 Wolgye-dong, Nowon-gu, Seoul 01897, Republic of Korea.

Human IoT Focused Research Center, Kwangwoon University, 447-1 Wolgye-dong, Nowon-gu, Seoul 01897, Republic of Korea.

出版信息

ACS Nano. 2023 May 9;17(9):8355-8366. doi: 10.1021/acsnano.2c12784. Epub 2023 Apr 3.

Abstract

Electronic gloves (e-gloves), with their multifunctional sensing capability, hold a promising application in robotic skin and human-machine interfaces, endowing robots with a human sense of touch. Despite the progress in developing e-gloves by exploiting flexible or stretchable sensors, existing models have inherent rigidity in their sensing area, limiting their stretchability and sensing performance. Herein, we present an all-directional strain-insensitive stretchable e-glove that successfully extends sensing functionality such as pressure, temperature, humidity, and ECG with minimal crosstalk. A scalable and facile method is successfully demonstrated by combining low-cost CO laser engraving and electrospinning technology to fabricate multimodal e-glove sensors with a vertical architecture. In comparison to other smart gloves, the proposed e-glove features a ripple-like meandering sensing area and interconnections that are designed to stretch in response to the applied deformation, without affecting the performance of the sensors offering full mechanical stretchability. Furthermore, CNT-coated laser-engraved graphene (CNT/LEG) is used as an active sensing material in which the cross-linking network of the CNT in the LEG minimizes the stress effect and maximizes the sensitivity of the sensors. The fabricated e-glove can detect hot/cold, moisture, and pain simultaneously and precisely, while also allowing for remote transmission of sensory data to the user.

摘要

电子手套(e手套)具有多功能传感能力,在机器人皮肤和人机界面方面有着广阔的应用前景,能赋予机器人人类的触觉。尽管在利用柔性或可拉伸传感器开发e手套方面取得了进展,但现有模型在其传感区域存在固有的刚性,限制了它们的可拉伸性和传感性能。在此,我们展示了一种全向应变不敏感的可拉伸e手套,它成功地扩展了诸如压力、温度、湿度和心电图等传感功能,且串扰极小。通过结合低成本的CO激光雕刻和静电纺丝技术,成功展示了一种可扩展且简便的方法,用于制造具有垂直结构的多模态e手套传感器。与其他智能手套相比,所提出的e手套具有波纹状蜿蜒的传感区域和互连结构,其设计目的是在受到施加的变形时伸展,而不会影响提供完全机械可拉伸性的传感器的性能。此外,碳纳米管包覆的激光雕刻石墨烯(CNT/LEG)被用作活性传感材料,其中LEG中碳纳米管的交联网络使应力效应最小化,并使传感器的灵敏度最大化。所制造的e手套能够同时精确地检测热/冷、湿度和疼痛,同时还能将传感数据远程传输给用户。

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