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A three-dimensional liquid diode for soft, integrated permeable electronics.

Authors :
Zhang, Binbin
Li, Jiyu
Zhou, Jingkun
Chow, Lung
Zhao, Guangyao
Huang, Ya
Ma, Zhiqiang
Zhang, Qiang
Yang, Yawen
Yiu, Chun Ki
Li, Jian
Chun, Fengjun
Huang, Xingcan
Gao, Yuyu
Wu, Pengcheng
Jia, Shengxin
Li, Hu
Li, Dengfeng
Liu, Yiming
Yao, Kuanming
Source :
Nature; Apr2024, Vol. 628 Issue 8006, p84-92, 9p
Publication Year :
2024

Abstract

Wearable electronics with great breathability enable a comfortable wearing experience and facilitate continuous biosignal monitoring over extended periods1–3. However, current research on permeable electronics is predominantly at the stage of electrode and substrate development, which is far behind practical applications with comprehensive integration with diverse electronic components (for example, circuitry, electronics, encapsulation)4–8. Achieving permeability and multifunctionality in a singular, integrated wearable electronic system remains a formidable challenge. Here we present a general strategy for integrated moisture-permeable wearable electronics based on three-dimensional liquid diode (3D LD) configurations. By constructing spatially heterogeneous wettability, the 3D LD unidirectionally self-pumps the sweat from the skin to the outlet at a maximum flow rate of 11.6 ml cm<superscript>−2</superscript> min<superscript>−1</superscript>, 4,000 times greater than the physiological sweat rate during exercise, presenting exceptional skin-friendliness, user comfort and stable signal-reading behaviour even under sweating conditions. A detachable design incorporating a replaceable vapour/sweat-discharging substrate enables the reuse of soft circuitry/electronics, increasing its sustainability and cost-effectiveness. We demonstrated this fundamental technology in both advanced skin-integrated electronics and textile-integrated electronics, highlighting its potential for scalable, user-friendly wearable devices.Incorporation of a ‘liquid diode’ into a wearable electronic platform enhances comfort and stability by shunting away sweat as it accumulates. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00280836
Volume :
628
Issue :
8006
Database :
Complementary Index
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
176459931
Full Text :
https://doi.org/10.1038/s41586-024-07161-1