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November 20, 2020Science624 citations

Artificial multimodal receptors based on ion relaxation dynamics

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IYInsang YouDMDavid G. MackanicNMNaoji Matsuhisa

Key Points

  • This research aims to create artificial receptors that can differentiate thermal and mechanical stimuli effectively.
  • Developed a deformable ionic receptor with an electrode-electrolyte-electrode structure.
  • Analyzed two variables: charge relaxation time for temperature measurement and normalized capacitance for strain measurement.
  • Used only two measurement frequencies to detect temperature and strain simultaneously.
  • The artificial receptor accurately measures absolute temperature with strain-insensitivity using charge relaxation time.
  • Normalized capacitance enables detection of strain without temperature interference.
  • The multimodal ion-electronic skin detects real-time force directions and strain profiles in diverse tactile motions.

Abstract

Human skin has different types of tactile receptors that can distinguish various mechanical stimuli from temperature. We present a deformable artificial multimodal ionic receptor that can differentiate thermal and mechanical information without signal interference. Two variables are derived from the analysis of the ion relaxation dynamics: the charge relaxation time as a strain-insensitive intrinsic variable to measure absolute temperature and the normalized capacitance as a temperature-insensitive extrinsic variable to measure strain. The artificial receptor with a simple electrode-electrolyte-electrode structure simultaneously detects temperature and strain by measuring the variables at only two measurement frequencies. The human skin-like multimodal receptor array, called multimodal ion-electronic skin (IEM-skin), provides real-time force directions and strain profiles in various tactile motions (shear, pinch, spread, torsion, and so on).

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Cite This Study

You et al. (2020) studied this question.

synapsesocial.com/papers/69d9d85d00ab073a27837675https://doi.org/10.1126/science.aba5132
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