Bioinspired Hairy Skin Electronics for Detecting the Direction and Incident Angle of Airflow

The human skin has inspired multimodal detection using smart devices or systems in fields including biomedical engineering, robotics, and artificial intelligence. Hairs of a high aspect ratio (AR) connected to follicles, in particular, detect subtle structural displacements by airflow or ultralight...

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Veröffentlicht in:ACS applied materials & interfaces 2019-04, Vol.11 (14), p.13608-13615
Hauptverfasser: Chun, Sungwoo, Son, Wonkyeong, Choi, Changsoon, Min, Hyeongho, Kim, Jiwon, Lee, Heon Joon, Kim, Dongjin, Kim, Changhwan, Koh, Je-sung, Pang, Changhyun
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Sprache:eng
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Zusammenfassung:The human skin has inspired multimodal detection using smart devices or systems in fields including biomedical engineering, robotics, and artificial intelligence. Hairs of a high aspect ratio (AR) connected to follicles, in particular, detect subtle structural displacements by airflow or ultralight touch above the skin. Here, hairy skin electronics assembled with an array of graphene sensors (16 pixels) and artificial microhairs for multimodal detection of tactile stimuli and details of airflows (e.g., intensity, direction, and incident angle) are presented. Composed of percolation networks of graphene nanoplatelet sheets, the sensor array can simultaneously detect pressure, temperature, and vibration, all of which correspond to the sensing range of human tactile perceptions with ultrahigh response time (
ISSN:1944-8244
1944-8252
DOI:10.1021/acsami.9b01427