Current development of stretchable self-powered technology based on nanomaterials toward wearable biosensors in biomedical applications

Front Bioeng Biotechnol. 2023 Apr 11:11:1164805. doi: 10.3389/fbioe.2023.1164805. eCollection 2023.

Abstract

In combination with the growing fields of artificial intelligence and Internet-of-things (IoT), the innovation direction of next-generation biosensing systems is toward intellectualization, miniaturization, and wireless portability. Enormous research efforts have been made in self-powered technology due to the gradual decline of traditional rigid and cumbersome power sources in comparison to wearable biosensing systems. Research progress on various stretchable self-powered strategies for wearable biosensors and integrated sensing systems has demonstrated their promising potential in practical biomedical applications. In this review, up-to-date research advances in energy harvesting strategies are discussed, together with a future outlook and remaining challenges, shedding light on the follow-up research priorities.

Keywords: biomedical applications; biosensor; self-powered; stretchable device; wearable.

Publication types

  • Review

Grants and funding

Ningbo Scientific and Technological Innovation 2025 Major Project (No. 2021Z108); Yongjiang Talent Introduction Programme (No. 2021A-154-G).