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A transparent bending-insensitive pressure sensor

delete2016-01-25
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OA
AI
S
Sungwon Lee
A
Amir Reuveny
J
Jonathan T. Reeder
S
Sunghoon Lee
H
Hanbit Jin
Q
Qihan Liu
T
Tomoyuki Yokota
T
Tsuyoshi Sekitani
T
Takashi Isoyama
Y
Yusuke Abe
Z
Zhigang Suo
T
Takao Someya *
DOI:10.1038/NNANO.2015.324delete
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摘要

摘要

En 中文
Measuring small normal pressures is essential to accurately evaluate external stimuli in curvilinear and dynamic surfaces such as natural tissues. Usually, sensitive and spatially accurate pressure sensors are achieved through conformal contact with the surface; however, this also makes them sensitive to mechanical deformation (bending). Indeed, when a soft object is pressed by another soft object, the normal pressure cannot be measured independently from the mechanical stress. Here, we show a pressure sensor that measures only the normal pressure, even under extreme bending conditions. To reduce the bending sensitivity, we use composite nanofibres of carbon nanotubes and graphene. Our simulations show that these fibres change their relative alignment to accommodate bending deformation, thus reducing the strain in individual fibres. Pressure sensitivity is maintained down to a bending radius of 80 mu m. To test the suitability of our sensor for soft robotics and medical applications, we fabricated an integrated sensor matrix that is only 2 mu m thick. We show real-time (response time of similar to 20 ms), large-area, normal pressure monitoring under different, complex bending conditions.
Keyword:
ELECTRONIC SKIN
EPIDERMAL ELECTRONICS
MACHINE INTERFACES
CARBON NANOTUBES
ARTIFICIAL SKIN
LARGE-AREA
DESIGN
MATRIX
TRANSISTORS
FILMS
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期刊

Nature Nanotechnology 封面图
Nature Nanotechnology
IF:
34.9
论文数:
4.8K
被引数:
8.1W

机构

U
University of Tokyo
学者数:
7.1W
论文数: 6.5W
被引数: 2.2K
H
Harvard University
学者数:
26.5W
论文数: 22.0W
被引数: 28.7W
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