A review on electrode materials of supercapacitors used in wearable bioelectronics and implantable biomedical applications

Abstract

Supercapacitors, a class of electrochemical energy storage devices, offer a promising solution for powering wearable bioelectronics and implantable biomedical devices. Their high-power density, rapid charge–discharge capabilities, and long cycle life make them ideal for applications requiring quick bursts of energy and extended operation. To address the challenges of energy density, self-discharge, miniaturization, integration, and power consumption, researchers are exploring various strategies, including developing novel electrode materials, optimizing device architectures, and integrating advanced fabrication techniques. Metal oxides, carbon-based materials, MXenes, and their composites have emerged as promising electrode materials due to their high specific surface area, excellent conductivity, and biocompatibility. For wearable bioelectronics, supercapacitors can power a wide range of devices, including wearable sensors, smart textiles, and other devices that require intermittent or pulsed energy. In implantable biomedical devices, supercapacitors offer a reliable and safe power source for applications such as pacemakers, neural implants, and drug delivery systems. By addressing the challenges and capitalizing on emerging technologies, supercapacitors have the potential to revolutionize the field of bioelectronics and biomedical engineering, enabling the development of innovative devices that improve healthcare and quality of life.

Graphical abstract: A review on electrode materials of supercapacitors used in wearable bioelectronics and implantable biomedical applications

Article information

Article type
Review Article
Submitted
26 Nov 2024
Accepted
20 Mar 2025
First published
20 Mar 2025

Mater. Horiz., 2025, Advance Article

A review on electrode materials of supercapacitors used in wearable bioelectronics and implantable biomedical applications

C. V. V. Muralee Gopi, S. Alzahmi, V. Narayanaswamy, K. V. G. Raghavendra, B. Issa and I. M. Obaidat, Mater. Horiz., 2025, Advance Article , DOI: 10.1039/D4MH01707B

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