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Wet chemically produced nanomaterials for soft wearable biosensors

delete2025-07-21
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PRE
AI
任旺 (Ren Wang)
G
Guangzhao Mao
D
Dewei Chu
N
Noushin Nasiri
王玉玲 cover
王玉玲 (Yuling Wang)
M
Marcela Bilek
K
Ken‐Tye Yong
W
Wallace W. H. Wong
S
Stan Skafidas
J
Jefferson Zhe Liu
Y
Yuri S. Kivshar
M
Madhu Bhaskaran
Y
Yuerui Lu
B
Benjamin J. Eggleton
L
Lining Arnold Ju
石倩倩 cover
石倩倩 (Qianqian Shi)
N
Nam‐Trung Nguyen
C
Chwee Teck Lim
W
Wenlong Cheng
DOI:10.1039/D5NH00048Cdelete
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Abstract

Abstract

En 中文
Wearable biosensors are gaining significant attention for their ability to monitor vital health signs remotely; continuously; and non-invasively. Nanomaterials offer transformative potential for next-generation soft wearable sensors; enabling seamless skin integration with enhanced comfort and data accuracy. Wet chemistry provides a scalable; cost-effective approach to producing nanomaterials; transforming rigid sensors into soft; flexible; and stretchable devices for broader wearable applications. This review highlights recent advances in soft wearable biosensors based on wet chemically produced nanomaterials; including metals; carbons; conducting polymers; conductive hydrogels; and liquid metals. It discusses fabrication techniques such as conductive ink formulation; ink delivery; electroless coating; and fiber integration; along with applications in physiological; physical; and biochemical monitoring. The review concludes by addressing challenges and opportunities; emphasizing the potential of these sensors in revolutionizing medical technology and personalized healthcare.

Journal

Nanoscale Horizons cover
Nanoscale Horizons
IF:
6.6
Papers:
1.3K
Citations:
6.3K

Organization

No organization information available