Flexible,
semitransparent ionic liquid gel (ionogels) film was
first fabricated by in situ polymerization. The optimized ionogels
exhibited excellent mechanical properties, high conductivity, and
force sensing characteristics. The multifunctional sensor based on
the ionogel film was constructed and provided the high sensitivity
of 15.4 kPa
–1
and wide detection range sensing from
5 Pa to 5 kPa. Moreover, the aforementioned sensor demonstrated excellent
mechanical stability against repeated external deformations (for 3000
cycles under 90° bending). Importantly, the sensor showed advantages
in detection of environmental changes to the external stimulus of
subtle signals, including a rubber blower blowing the sensor, gently
touching, torsion, and bending.
Wearable sensors for detection of human activities have encouraged the development of highly elastic sensors. In particular, to capture subtle and large-scale body motion, stretchable and wide-range strain sensors are highly desired, but still a challenge. Herein, a highly stretchable and transparent stain sensor based on ionic liquids and elastic polymer has been developed. The as-obtained sensor exhibits impressive stretchability with wide-range strain (from 0.1% to 400%), good bending properties and high sensitivity, whose gauge factor can reach 7.9. Importantly, the sensors show excellent biological compatibility and succeed in monitoring the diverse human activities ranging from the complex large-scale multidimensional motions to subtle signals, including wrist, finger and elbow joint bending, finger touch, breath, speech, swallow behavior and pulse wave.
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