Unlocking High-Efficiency Energy Storage and Conversion with Biocompatible Electrodes: The Key Role of Interfacial Interaction Assembly and Structural Design

Abstract

Biocompatible electrodes, situated at the intersection of bioelectronics and soft electronics, hold the promise of groundbreaking advancements in human-machine interaction and bio-inspired applications. Their development relies on achieving stable, robust deposition of electrically and/or electrochemically active components on biocompatible substrates, ensuring operational stability under various mechanical stresses. However, despite notable progress, most biocompatible electrodes still struggle to simultaneously achieve high mechanical flexibility, electrical conductivity, electrochemical activity, and long-term stability at the same time. These challenges present critical barriers to the development of more advanced biocompatible devices, particularly in the field of energy storage and conversion. The key lies in optimizing the complementary interfacial interactions between active components (i.e., electrically and/or electrochemically active components) and biocompatible substrates, and between adjacent active components, as well as in the structural design of the electrodes. In this perspective, we first review recent advances in biocompatible electrodes for energy storage and conversion devices, addressing the remaining challenges for significant performance improvements. In particular, we highlight the critical role of the interfacial interactions between electrode components and demonstrate how these interactions significantly enhance the energy performance and operational stability.

Article information

Article type
Perspective
Submitted
19 kesä 2024
Accepted
31 heinä 2024
First published
07 elo 2024
This article is Open Access
Creative Commons BY-NC license

Energy Adv., 2024, Accepted Manuscript

Unlocking High-Efficiency Energy Storage and Conversion with Biocompatible Electrodes: The Key Role of Interfacial Interaction Assembly and Structural Design

J. Ahn, H. Lim, J. Ko and J. Cho, Energy Adv., 2024, Accepted Manuscript , DOI: 10.1039/D4YA00387J

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