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Updated: Nov 19, 2025

Chronic Implantation of Multiple Flexible Polymer Electrode Arrays
Published on: October 4, 2019
A thin, deformable, high-performance supercapacitor implant that can be biodegraded and bioabsorbed within an animal
Hongwei Sheng1, Jingjing Zhou1, Bo Li1
1Key Laboratory of Special Function Materials and Structure Design, Ministry of Education, School of Physical Science and Technology, Lanzhou University, Lanzhou 730000, People's Republic of China.
Abstract:
It has been an outstanding challenge to achieve implantable energy modules that are mechanically soft (compatible with soft organs and tissues), have compact form factors, and are biodegradable (present for a desired time frame to power biodegradable, implantable medical electronics). Here, we present a fully biodegradable and bioabsorbable high-performance supercapacitor implant, which is lightweight and has a thin structure, mechanical flexibility, tunable degradation duration, and biocompatibility. The supercapacitor with a high areal capacitance (112.5 mF cm-2 at 1 mA cm-2) and energy density (15.64 μWh cm-2) uses two-dimensional, amorphous molybdenum oxide (MoO ) flakes as electrodes, which are grown in situ on water-soluble Mo foil using a green electrochemical strategy. Biodegradation behaviors and biocompatibility of the associated materials and the supercapacitor implant are systematically studied. Demonstrations of a supercapacitor implant that powers several electronic devices and that is completely degraded after implantation and absorbed in rat body shed light on its potential uses.

