Wearable healthcare smart electrochemical biosensors based on co-assembled prussian blue—graphene film for glucose sensing

Wearable film-based smart biosensors have been developed for real-time biomolecules detection. Particularly, interfacial co-assembly of reduced graphene oxide-prussian blue (PB-RGO) film through electrostatic interaction has been systematically studied by controllable pH values, achieving optimal PB...

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Veröffentlicht in:Mikrochimica acta (1966) 2022-01, Vol.189 (1), p.46-46, Article 46
Hauptverfasser: Ma, Junlin, Du, Yuhang, Jiang, Yu, Shen, Liuxue, Ma, Hongting, Lv, Fengjuan, Cui, Zewei, Pan, Yuzhen, Shi, Lei, Zhu, Nan
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Sprache:eng
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Zusammenfassung:Wearable film-based smart biosensors have been developed for real-time biomolecules detection. Particularly, interfacial co-assembly of reduced graphene oxide-prussian blue (PB-RGO) film through electrostatic interaction has been systematically studied by controllable pH values, achieving optimal PB-RGO nanofilms at oil/water (O/W) phase interface driven by minimization of interfacial free energy for wearable biosensors. As a result, as-prepared wearable biosensors of PB-RGO film could be easily woven into fabrics, exhibiting excellent glucose sensing performance in amperometric detection with a sensitivity of 27.78 µA mM −1  cm −2 and a detection limit of 7.94 μM, as well as impressive mechanical robustness of continuously undergoing thousands of bending or twist. Moreover, integrated wearable smartsensing system could realize remotely real-time detection of biomarkers in actual samples of beverages or human sweat via cellphones. Prospectively, interfacial co-assembly engineering driven by pH-induced electrostatic interaction would provide a simple and efficient approach for acquiring functional graphene composites films, and further fabricate wearable smartsensing devices in health monitoring fields. Graphical abstract
ISSN:0026-3672
1436-5073
DOI:10.1007/s00604-021-05087-3