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Mechanically Driven, Self-Powered Hydrogel Iontronics for Visualized Tactile Logic Gate Circuit

delete2026-05-14
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PRE
AI
Y
Yaowen Ouyang
X
Xing Xiang
Y
Yuyang Zhang
L
Li X
Y
Yanguang Zhou *
王振林 (Zhong Lin Wang)
D
Di Wei *
DOI:10.1002/smll.73728delete
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Abstract

Abstract

En 中文
The modulation of ion transport underlies neuronal signal integration, yet achieving self-powered tactile logic based on ionic mechanisms remains challenging. Here we report a hydrogel iontronic platform that mimics neuronal threshold-triggered action potentials and enables mechano-driven, self-powered logic processing. A polyvinyl alcohol/polyacrylamide (PVA/PAM) double-network hydrogel with engineered geometric, mechanical, and impedance asymmetry exhibits pronounced nonlinear ion gating, delivering peak ionic current densities of ∼2 mA cm−2 at 72.68 kPa (0.275 A m−2 kPa−1), exceeding state-of-the-art devices and orders of magnitude higher than conventional piezoionic systems. Molecular dynamics simulations reveal that interactions between NO3− and water molecules in hydrogel invert diffusion asymmetry, providing deterministic control over ionic transport. Electrolyte selection enables programmable switching between excitatory and inhibitory ionic outputs, allowing realization of four fundamental self-powered Boolean logic gates (OR, AND, NOR, and NAND) through simple series-parallel integration. Coupling triboelectric nanogenerators (TENG) enables real-time visualized tactile logic via LED outputs. This work advances hydrogel iontronics from passive sensing toward integrated perception-cognition, opening new routes for neuromimetic human-machine interfaces (HMI) and Internet-of-Things (IoT) systems.
Keywords:
hydrogel iontronics
ion transport behavior modulation
piezoionic nanogenerator
self-powered device
visualized tactile logic gate circuit

Journal

Small cover
Small
IF:
12.1
Papers:
3.0W
Citations:
16.4W

Organization

T
the hong kong university of science and technology
Scholars:
1.6K
Papers: 739
Citations: 0
C
chinese academy of sciences
Scholars:
55.2W
Papers: 44.6W
Citations: 704