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Bioinspired, Omnidirectional and Hypersensitive Flexible Strain Sensors.

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Sensors are widely used in various fields, among which flexible strain sensors that can sense minuscule mechanical signals and be easy to adapt to many irregular surfaces are attractive for… Click to show full abstract

Sensors are widely used in various fields, among which flexible strain sensors that can sense minuscule mechanical signals and be easy to adapt to many irregular surfaces are attractive for structure health monitoring, early detections, and failure prevention in humans, machines, or buildings. In practical applications, subtle and abnormal vibrations generated from any direction are highly desired to detect and even orientate their directions initially to eliminate potential hazards. However, it is challenging for flexible strain sensors to achieve hypersensitivity and omnidirectionality simultaneously due to the restrictions of many materials with anisotropic mechanical/electrical properties and some micro/nanostructures they employed. Herein, we reveal that the vision-degraded scorpion detects subtle vibrations spatially and omnidirectionally using a slit sensillum with fan-shaped grooves. A bioinspired flexible strain sensor consisting of curved microgrooves arranged around a central circle is devised, exhibiting an unprecedented gauge factor of over 18,000 and stability over 7,000 cycles. It can sense and recognize vibrations of diverse input waveforms at different locations, bouncing behaviors of a free-falling bead, and human wrist pulses regardless of sensor installation angles. The geometric designs can be translated to other material systems for potential applications including human health monitoring and engineering failure detection. This article is protected by copyright. All rights reserved.

Keywords: omnidirectional hypersensitive; flexible strain; strain; hypersensitive flexible; bioinspired omnidirectional; strain sensors

Journal Title: Advanced materials
Year Published: 2022

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