Bioinspiration & Biomimetics · 2015 · 29 citations · 31 references
Wearable BiosensorsBiomedical SensorsTactile Hair StrandsEngineeringSensorsMicrofabricationPolymer PedotFlow SensorMechanical EngineeringMicromachinesFlow CellBiomedical DevicesSensor DesignBiomedical EngineeringMicrofluidicsBio-inspired Flow SensorOptical SensorsSensor Technology
This paper reports on the creation of a low-cost, disposable sensor for low flow velocities, constructed from extruded micro-sized 'hair' of conducting polymer PEDOT. These microstructures are inspired by hair strands found in many arthropods and chordates, which play a prime role in sensing air flows. The paper describes the fabrication techniques and the initial prototype testing results toward employing this sensing mechanism in applications requiring sensing of low flow rates such as a flow sensor in neonatal resuscitators. The fabricated 1000 μm long, 6 μm diameter micro-hairs mimic the bending movement of tactile hair strands to sense the velocity of air flow. The prototype sensor developed is a four-level direct digital-output sensor and is capable of detecting flow velocities of up to 0.97 m s(-1).
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Mechanical characterization of PEDOT:PSS thin films
Udo Lang, Nicola Naujoks, Jürg Dual · Synthetic Metals · 2008 · 354 citations
Nannan Chen, Charles L. Tucker, Jonathan Engel et al. · Journal of Microelectromechanical Systems · 2007 · 223 citations