4.8 Review

Hydrogels as Soft Ionic Conductors in Flexible and Wearable Triboelectric Nanogenerators

Journal

ADVANCED SCIENCE
Volume 9, Issue 11, Pages -

Publisher

WILEY
DOI: 10.1002/advs.202106008

Keywords

flexible and wearable applications; hydrogel; ionic conductivity; current collector; triboelectric nanogenerator

Funding

  1. City University of Hong Kong Strategic Research Grant (SRG) [7005505]
  2. Shenzhen - Hong Kong Innovative Collaborative Research and Development Program [SGLH20181109110802117 (CityU 9240014)]

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This article provides an overview of the advantages, types, advanced functions, enhanced output performance, as well as flexible and wearable applications of hydrogel-based TENGs (H-TENGs). It is a valuable reference for researchers and engineers in the field. Furthermore, the challenges and future prospects of H-TENGs are also discussed.
Flexible triboelectric nanogenerators (TENGs) have attracted increasing interest since their advent in 2012. In comparison with other flexible electrodes, hydrogels possess transparency, stretchability, biocompatibility, and tunable ionic conductivity, which together provide great potential as current collectors in TENGs for wearable applications. The development of hydrogel-based TENGs (H-TENGs) is currently a burgeoning field but research efforts have lagged behind those of other common flexible TENGs. In order to spur research and development of this important area, a comprehensive review that summarizes recent advances and challenges of H-TENGs will be very useful to researchers and engineers in this emerging field. Herein, the advantages and types of hydrogels as soft ionic conductors in TENGs are presented, followed by detailed descriptions of the advanced functions, enhanced output performance, as well as flexible and wearable applications of H-TENGs. Finally, the challenges and prospects of H-TENGs are discussed.

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