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1.
Nanotechnology ; 29(7): 075501, 2018 Feb 16.
Artículo en Inglés | MEDLINE | ID: mdl-29256443

RESUMEN

A new self-powered wearable gustation electronic skin for mimicking taste buds has been realized based on enzyme-modified/ZnO nanowire arrays on patterned-electrode flexible substrate. The e-skin can actively taste beverages or fruits without any external electric power. Through the piezoelectric-enzymatic reaction coupling effect, the nanowires can harvest the mechanical energy of body movement and output piezoelectric signal. The piezoelectric output is significantly dependent on the concentration of target analyte. The response for detecting 2 × 10-2 M ascorbic acid (ascorbate acid oxidase@ZnO) is up to 171.747, and the selectivity is high. The response for detecting 50% alcohol (alcohol oxidase@ZnO) is up to 45.867. Our results provide a new research direction for the development of multifunctional e-skin and expand the study scope for self-powered bionic systems.


Asunto(s)
Oxidorreductasas de Alcohol/metabolismo , Ascorbato Oxidasa/metabolismo , Suministros de Energía Eléctrica , Papilas Gustativas/fisiología , Gusto/fisiología , Dispositivos Electrónicos Vestibles , Técnicas Biosensibles , Humanos , Óxido de Zinc/química
2.
ACS Appl Mater Interfaces ; 9(35): 29526-29537, 2017 Sep 06.
Artículo en Inglés | MEDLINE | ID: mdl-28782353

RESUMEN

The emerging multifunctional flexible electronic-skin for establishing body-electric interaction can enable real-time monitoring of personal health status as a new personalized medicine technique. A key difficulty in the device design is the flexible power supply. Here a self-powered wearable noninvasive electronic-skin for perspiration analysis has been realized on the basis of a piezo-biosensing unit matrix of enzyme/ZnO nanoarrays. The electronic-skin can detect lactate, glucose, uric acid, and urea in the perspiration, and no outside electrical power supply or battery is used in the biosensing process. The piezoelectric impulse of the piezo-biosensing units serves as the power supply and the data biosensor. The working mechanism can be ascribed to the piezoelectric-enzymatic-reaction coupling effect of enzyme/ZnO nanowires. The electronic-skin can real-time/continuously monitor the physiological state of a runner through analyzing the perspiration on his skin. This approach can promote the development of a new-type of body electric and self-powered biosensing electronic-skin.


Asunto(s)
Óxido de Zinc/química , Técnicas Biosensibles , Suministros de Energía Eléctrica , Nanocables , Dispositivos Electrónicos Vestibles
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