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Mechano-regulated metal-organic framework nanofilm for ultrasensitive and anti-jamming strain sensing.


ABSTRACT: The development of ultrasensitive, anti-jamming, and durable sensors that can precisely distinguish different human body motions are of great importance for smart health monitoring and diagnosis. Physical implementation of such flexible sensors is still a challenge at the moment. Combining the designs of advanced material showing excellent electrochemical properties with the facilitative structure engineering, high-performance flexible sensors that satisfy both signal detecting and recognition requirements may be made possible. Here we report the first metal-organic framework-based strain sensor with accurate signal detection and noise-screening properties. Upon doping the tricarboxytriphenyl amine-based metal-organic framework nanofilm with iodine, the two-terminal device exhibits ultrahigh sensitivity with a gauge factor exceeding 10,000 in the 2.5% to 3.3% deformation range for over 5000 dynamic operating cycles and out-of-scale noise-screening capability. The high-performance strain sensor can easily differentiate the moderate muscle hyperspasmia from subtle swaying and vigorous sporting activities.

SUBMITTER: Pan L 

PROVIDER: S-EPMC6145903 | biostudies-literature | 2018 Sep

REPOSITORIES: biostudies-literature

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Mechano-regulated metal-organic framework nanofilm for ultrasensitive and anti-jamming strain sensing.

Pan Liang L   Liu Gang G   Shi Wenxiong W   Shang Jie J   Leow Wan Ru WR   Liu Yaqing Y   Jiang Ying Y   Li Shuzhou S   Chen Xiaodong X   Li Run-Wei RW  

Nature communications 20180919 1


The development of ultrasensitive, anti-jamming, and durable sensors that can precisely distinguish different human body motions are of great importance for smart health monitoring and diagnosis. Physical implementation of such flexible sensors is still a challenge at the moment. Combining the designs of advanced material showing excellent electrochemical properties with the facilitative structure engineering, high-performance flexible sensors that satisfy both signal detecting and recognition r  ...[more]

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