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Touch IoT enabled by wireless self-sensing and haptic-reproducing electronic skin

Li, Dengfeng; Zhou, Jingkun; Yao, Kuanming; Liu, Sitong; He, Jiahui; Su, Jingyou; Qu, Qing'ao; Gao, Yuyu; Song, Zhen; Yiu, Chunki; Sha, Chuanlu; Sun, Zhi; Zhang, Binbin; Li, Jian; Huang, Libei; Xu, Chenyu; Wong, Tsz Hung; Huang, Xingcan; Li, Jiyu; Ye, Ruquan; Wei, Lei; Zhang, Zhengyou; Guo, Xu; Dai, Yuan*; Xie, Zhaoqian*; Yu, Xinge*
Science Citation Index Expanded
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摘要

Tactile sensations are mainly transmitted to each other by physical touch. Wireless touch perception could be a revolution for us to interact with the world. Here, we report a wireless self-sensing and haptic-reproducing elec-tronic skin (e-skin) to realize noncontact touch communications. A flexible self-sensing actuator was developed to provide an integrated function in both tactile sensing and haptic feedback. When this e-skin was dynamically pressed, the actuator generated an induced voltage as tactile information. Via wireless communication, another e-skin could receive this tactile data and run a synchronized haptic reproduction. Thus, touch could be wirelessly conveyed in bidirections between two users as a touch intercom. Furthermore, this e-skin could be connected with various smart devices to form a touch internet of things where one-to-one and one-to-multiple touch de-livery could be realized. This wireless touch presents huge potentials in remote touch video, medical care/as-sistance, education, and many other applications.

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