Engineering biomimetic hair bundle sensors for underwater sensing applications
- Publication Type:
- Conference Proceeding
- Citation:
- AIP Conference Proceedings, 2018, 1965
- Issue Date:
- 2018-05-31
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1.5038533.pdf | Published version | 1.65 MB |
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© 2018 Author(s). We present the fabrication of an artificial MEMS hair bundle sensor designed to approximate the structural and functional principles of the flow-sensing bundles found in fish neuromast hair cells. The sensor consists of micro-pillars of graded height connected with piezoelectric nanofiber "tip-links" and encapsulated by a hydrogel cupula-like structure. Fluid drag force actuates the hydrogel cupula and deflects the micro-pillar bundle, stretching the nanofibers and generating electric charges. These biomimetic sensors achieve an ultrahigh sensitivity of 0.286 mV/(mm/s) and an extremely low threshold detection limit of 8.24 μm/s. A complete version of this paper has been published [1].
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