材料科学
压力传感器
复合数
弹性体
弯曲
复合材料
涂层
弯曲半径
机制(生物学)
碳纤维
图层(电子)
灵敏度(控制系统)
纳米技术
光电子学
机械工程
电子工程
哲学
工程类
认识论
作者
Stephen J K O'Neill,Huaxin Gong,Naoji Matsuhisa,Shu‐Cheng Chen,Hee Moon,Hung Chin Wu,Xianfeng Chen,Xiao Chen,Zhenan Bao
标识
DOI:10.1002/admi.202000875
摘要
Abstract Flexible pressure sensors are an essential part of robotic skin for human–machine interfaces, wearables, and implantable biomedical devices. However, the desirable characteristics of high sensitivity, conformability, and good scalability are often mutually exclusive. Here, a highly sensitive and flexible pressure sensor that can be easily fabricated by coating a carbon flower and elastomer composite is presented. The composite made from uniform‐sized carbon flower particles exhibits a contact‐based mechanism for pressure sensing, as opposed to typical carbon black pressure sensitive composites which utilize percolation as the sensing mechanism. The contact mechanism allows for an active layer down to 13 µm, and a bending insensitivity down to a 5.5 mm bending radius, while maintaining a high sensitivity. Furthermore, the composite is printed over a large 1 m × 2 cm pressure sensing area, showing the preparation of this sensor can be scaled to large area.
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