Piezoionic mechanoreceptors: Force-induced current generation in hydrogels - Archive ouverte HAL
Article Dans Une Revue Science Année : 2022

Piezoionic mechanoreceptors: Force-induced current generation in hydrogels

Yuta Dobashi
Dickson Yao
  • Fonction : Auteur
Yael Petel
Tan Ngoc Nguyen
  • Fonction : Auteur
Mirza Saquib Sarwar
  • Fonction : Auteur
Yacine Thabet
Cliff Ng
Ettore Scabeni Glitz
Carl Michal
John Madden

Résumé

The human somatosensory network relies on ionic currents to sense, transmit, and process tactile information. We investigate hydrogels that similarly transduce pressure into ionic currents, forming a piezoionic skin. As in rapid- and slow-adapting mechanoreceptors, piezoionic currents can vary widely in duration, from milliseconds to hundreds of seconds. These currents are shown to elicit direct neuromodulation and muscle excitation, suggesting a path toward bionic sensory interfaces. The signal magnitude and duration depend on cationic and anionic mobility differences. Patterned hydrogel films with gradients of fixed charge provide voltage offsets akin to cell potentials. The combined effects enable the creation of self-powered and ultrasoft piezoionic mechanoreceptors that generate a charge density four to six orders of magnitude higher than those of triboelectric and piezoelectric devices.

Domaines

Chimie
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Dates et versions

hal-04077244 , version 1 (21-04-2023)

Identifiants

Citer

Yuta Dobashi, Dickson Yao, Yael Petel, Tan Ngoc Nguyen, Mirza Saquib Sarwar, et al.. Piezoionic mechanoreceptors: Force-induced current generation in hydrogels. Science, 2022, 376 (6592), pp.502-507. ⟨10.1126/science.aaw1974⟩. ⟨hal-04077244⟩
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