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Thermoelectric-driven self-powered microneedle sensor for continuous interstitial fluid glucose monitoring

delete2025-10-06
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PRE
AI
J
Jun-Hsuan Chung
J
Jaba Roy Chowdhury
K
Kai Po Fan
K
Kuei-Lin Liu
B
Bishal Kumar Nahak
A
Anindita Ganguly
M
Manish Kumar Sharma
P
Parag Parashar
S
Sangmin Lee *
Z
Zong‐Hong Lin *
DOI:10.1016/j.nanoen.2025.111505delete
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Abstract

Abstract

En 中文
• Wearable device with flexible thermoelectric generator for driving the self-powered microneedle sensor for interstitial fluid glucose sensing. • Graphene/Au-Pt hierarchical layer modified stainless steel microneedle offers better catalytic and bio functionalization properties. • The sensor demonstrates high electrochemical sensitivity and operates in a wide linear range. • The system is validated in in vivo model showing strong correlation with blood glucose. • Bluetooth technology for continuous monitoring of interstitial fluid glucose.

Journal

Nano Energy cover
Nano Energy
IF:
17.1
Papers:
1.2W
Citations:
13.0W

Organization

N
National Taiwan University
Scholars:
4.7W
Papers: 4.2W
Citations: 3.6W
C
Chung-Ang University
Scholars:
1.2K
Papers: 549
Citations: 1.3W