| Literature DB >> 34594013 |
Yihao Zhou1, Xun Zhao1, Jing Xu1, Yunsheng Fang1, Guorui Chen1, Yang Song1, Song Li1, Jun Chen2.
Abstract
The magnetoelastic effect-the variation of the magnetic properties of a material under mechanical stress-is usually observed in rigid alloys, whose mechanical modulus is significantly different from that of human tissues, thus limiting their use in bioelectronics applications. Here, we observed a giant magnetoelastic effect in a soft system based on micromagnets dispersed in a silicone matrix, reaching a magnetomechanical coupling factor indicating up to four times more enhancement than in rigid counterparts. The results are interpreted using a wavy chain model, showing how mechanical stress changes the micromagnets' spacing and dipole alignment, thus altering the magnetic field generated by the composite. Combined with liquid-metal coils patterned on polydimethylsiloxane working as a magnetic induction layer, the soft magnetoelastic composite is used for stretchable and water-resistant magnetoelastic generators adhering conformably to human skin. Such devices can be used as wearable or implantable power generators and biomedical sensors, opening alternative avenues for human-body-centred applications.Entities:
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Year: 2021 PMID: 34594013 DOI: 10.1038/s41563-021-01093-1
Source DB: PubMed Journal: Nat Mater ISSN: 1476-1122 Impact factor: 43.841