A Mitochondrion-Inspired Magnesium-Oxygen Biobattery with High Energy Density In Vivo.

He, Er; Ren, Junye; Wang, Lie; Li, Fangyan; Li, Luhe; Ye, Tingting; Jiao, Yiding; Li, Dan et al. · Adv Mater · 2023

basic_science · Level V

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Abstract

Implantable batteries are urgently needed as a power source to meet the demands of the next generation of biomedical electronic devices. However, existing implantable batteries suffer from unsatisfactory energy density, hindering the miniaturization of these devices. Here, a mitochondrion-inspired magnesium-oxygen biobattery that achieves both high energy density and biocompatibility in vivo is reported. The resulting biobattery exhibits a recorded energy density of 2517 Wh L<sup>-1</sup> /1491 Wh kg<sup>-1</sup> based on the total volume/mass of the device in vivo, which is ≈2.5 times higher than the current state-of-the-art, and can adapt to different environments for stable discharges. The volume of the magnesium-oxygen biobattery can be as thin as 0.015 mm<sup>3</sup> and can be scaled up to 400 times larger without reducing the energy density. Additionally, it shows a stable biobattery/tissue interface, significantly reducing foreign body reactions. This work presents an effective strategy for the development of high-performance implantable batteries.

Medical subject headings