A Monolithic Neuromorphic Device for In-Sensor Tactile Computing

  • Du, Yi
  • Yang, Lu
  • Gong, Jiangdong
  • Hu, Jiahe
  • Liu, Jiaqi
  • ... Lee, Hwa Sung
  • 외 4명
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6

초록

To emulate the tactile perception of human skin, the integration of tactile sensors with neuromorphic devices has emerged as a promising approach to achieve near-sensor information processing. Here, we present a monolithic electronic device that seamlessly integrates tactile perception and neuromorphic computing functionalities within a single architecture, with synaptic plasticity directly tunable by tactile inputs. This unique capability stems from our engineered device structure employing SnO2 nanowires as the conductive channel coupled with a pressure-sensitive chitosan layer ionic gating layer. The device demonstrates pressure-dependent memory retention and learning behaviors, effectively mimicking the enhanced cognitive functions observed in humans under stressful conditions. Furthermore, the integrated design exhibits potential for implementing bioinspired electronic systems requiring adaptive tactile information processing.

키워드

TRANSPARENT
제목
A Monolithic Neuromorphic Device for In-Sensor Tactile Computing
저자
Du, YiYang, LuGong, JiangdongHu, JiaheLiu, JiaqiZhang, SongQu, ShangdaChen, JiaxinLee, Hwa SungXu, Wentao
DOI
10.1021/acs.jpclett.5c00583
발행일
2025-05
유형
Article
저널명
The Journal of Physical Chemistry Letters
16
21
페이지
5312 ~ 5320