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Self-biased magnetoelectric Ni/LiNbO3/Ni for body embedded electronic energy harvesters

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arxiv 2308.15428 v1 pith:EP7ADETS submitted 2023-08-29 cond-mat.mtrl-sci physics.app-ph

Self-biased magnetoelectric Ni/LiNbO3/Ni for body embedded electronic energy harvesters

classification cond-mat.mtrl-sci physics.app-ph
keywords magnetictrilayersfieldlinbo3magnetoelectricfabricationmedicalself-biased
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this study, we present the fabrication and characterization of Ni/LiNbO3/Ni trilayers using RF sputtering. These trilayers exhibit thick Ni layers (10 microns) and excellent adherence to the substrate, enabling high magnetoelectric coefficients. By engineering the magnetic anisotropy of Nickel through anisotropic thermal residual stress induced during fabrication, and by selecting a carefully chosen cut angle for the LiNbO3 substrate, we achieved a self-biased behavior. We demonstrate that these trilayers can power medical implant devices remotely using a small AC magnetic field excitation, thereby eliminating the need for a DC magnetic field and bulky magnetic field sources. The results highlight the potential of these trilayers for the wireless and non-invasive powering of medical implants. This work contributes to the advancement of magnetoelectric materials and their applications in healthcare technology.

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