Flexible Silk Film Based on Synergy of Hydrogen Bond and Cross-linking Network for Magnetic Sensitive Skin

Abstract

Magnetoresistive (MR) sensors with the ability to detect the external magnetic fields have attracted increasing attention in interactive human-machine interfaces and biomedical devices. However, existing MR sensors are typically constructed from rigid and bulky materials, failing to satisfy the flexibility and biocompatibility requirements for on-skin electronics. In this study, a flexible and biocompatible anisotropic magnetoresistance (AMR) film with a cross-linked silk substrate and a NiCo functional layer is reported for on-skin monitoring applications. The synergy of hydrogen bond and cross-linking network enhances the flexibility and mechanical stability of the silk film by forming an amorphous entanglement network with a reduced presence of large and compact β-sheet crystals. The developed AMR exhibits a high AMR ratio of 1.03%, comparable to those obtained with rigid AMR sensors. Under external magnetic fields, the silk-based AMR demonstrates the ability in monitoring its rotation (0–90°), bending (radius 10–60 mm), and distance (0–10 cm) to the magnet. Furthermore, we practically implement the flexible AMR for skin-interfaced applications, including the detection of the joint motions (e.g. wrist, ankle, and finger movements) and the control of turning pages. The proposed flexible magnetic film paves the way for the development of magnetosensitive electronic skins and wearable sensors.

Supplementary files

Article information

Article type
Paper
Submitted
29 ៨ 2024
Accepted
16 ១០ 2024
First published
18 ១០ 2024

J. Mater. Chem. A, 2024, Accepted Manuscript

Flexible Silk Film Based on Synergy of Hydrogen Bond and Cross-linking Network for Magnetic Sensitive Skin

C. Zhang, Q. Zhang, X. Li, W. Zhan, Y. Han, Z. Zhang, W. Su, L. Xue, W. Zhang, K. Zhou, S. Pan, N. Peng, Z. Ye, B. Peng and X. Zhang, J. Mater. Chem. A, 2024, Accepted Manuscript , DOI: 10.1039/D4TA06124A

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