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March 29, 2026Nano-Micro Letters11 citationsOpen Access

Graphene Aerogel-Based Flexible Pressure Sensor for Physiological Signal Detection and Human–Machine Interaction

ZWZihan WangZZZeshang ZhaoQTQiyang Tu

Key Points

  • This research aims to develop a flexible pressure sensor that achieves high sensitivity and precision for detecting subtle pressures.
  • Developed a sensor using reduced graphene oxide aerogel sandwiched between polydimethylsiloxane and polyimide film.
  • Integrated interdigital electrodes to enhance sensor performance.
  • Conducted stability tests over 20,000 loading/unloading cycles.
  • Achieved a sensitivity of 698.96 kPa −1.
  • Establishes a low limit of detection around 1 Pa.
  • Demonstrated capability to monitor physiological signals and recognize spatial pressure distribution.

Abstract

Abstract Despite extensive development of flexible pressure sensors, it is still difficult for them to simultaneously achieve high precision and a large response to subtle pressures. To address these challenges, this work demonstrates a flexible pressure sensing platform that features the reduced graphene oxide aerogel sandwiched between a polydimethylsiloxane encapsulation layer and a thin polyimide film with interdigital electrodes. The resulting pressure sensor exhibits a high sensitivity of 698.96 kPa −1 and a low limit of detection (~ 1 Pa), and outstanding stability over 20,000 loading/unloading cycles. Besides monitoring various physiological signals and human motions, the flexible pressure sensors can be configured into an array layout as a smart artificial electronic skin to recognize the spatial pressure distribution. The flexible pressure sensor can also be integrated with signal processing and wireless communication modules as a teleoperation system for gesture recognition, force feedback control, and kitchen food recognition, highlighting future potential toward smart robotics and human–machine interfaces.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69c8c384de0f0f753b39e665https://doi.org/10.1007/s40820-026-02109-8
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