Abstract
A novel stretchable flexible electrode capable of simultaneously detecting isotropic three-directional strain and normal pressure has been developed. Inspired by the recursive symmetry of the Peano-Gosper fractal, the electrode integrates liquid metal (EGaIn) microchannels within a PDMS matrix to achieve uniform strain distribution and mechanically robust conductive pathways under large deformation. Within a strain range of 0–60%, the electrode exhibits highly consistent three-directional responses, with resistance variation across axes kept below 4% and a gauge factor (GF) standard deviation of only 0.0252. The device demonstrates low hysteresis (minimum DH = 0.94%), good cyclic durability, and reliable electromechanical stability. For normal pressure sensing (0–20 kPa), it provides a linear response (R2 ≈ 0.99) with a moderate sensitivity of 0.198 kPa−1. Wearable tests on the wrist, finger, and fingertip confirm the electrode’s reliable operation in multidimensional mechanical monitoring. This integrated fractal–liquid metal design offers a promising route for multifunctional sensing in applications such as soft robotics, human–machine interaction, and wearable electronics.
| Original language | English |
|---|---|
| Article number | 1370 |
| Journal | Nanomaterials |
| Volume | 15 |
| Issue number | 17 |
| DOIs | |
| Publication status | Published - Sept 2025 |
Free Keywords
- liquid metal (EGaIn)
- multifunctional sensing
- normal pressure detection
- Peano-Gosper fractal curve
- stretchable electrode
- three-directional strain sensing
- wearable electronics
ASJC Scopus subject areas
- General Chemical Engineering
- General Materials Science
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