影响因子:14.1
发表刊物:Science Advances
摘要:Human skin perceives external mechanical stimuli by sensing the variation in the membrane potential of skin
sensory cells. Many scientists have attempted to recreate skin functions and develop electronic skins (e-skins)
based on active and passive sensing mechanisms. Inspired by the skin sensory behavior, we investigated materials
and electronic devices that allow us to encode mechanical stimuli into potential differences measured between
two electrodes, resulting in a potentiometric mechanotransduction mechanism. We present here a potentiometric mechanotransducer that is fabricated through an all-solution processing approach. This mechanotransducer shows ultralow-power consumption, highly tunable sensing behavior, and capability to detect both
static and low-frequency dynamic mechanical stimuli. Furthermore, we developed two novel classes of sensing
devices, including strain-insensitive sensors and single-electrode-mode e-skins, which are challenging to achieve
using the existing methods. This mechanotransduction mechanism has broad impact on robotics, prosthetics, and
health care by providing a much improved human-machine interface.
论文类型:期刊论文
学科门类:工学
文献类型:J
卷号:6
页面范围:eaba1062
是否译文:否
发表时间:2020-07-25
收录刊物:SCI