Flexible stretchable biosensor and preparation method thereof
A biosensor, flexible technology, applied in the field of flexible sensors, can solve the problems of reduced detection sensitivity, difficult signal acquisition and acquisition, complex structure, etc.
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[0053] In the present invention, the preparation method of the flexible and stretchable biosensor comprises the following steps:
[0054] Carrying out encapsulation and stretching of carbon nanotube braids in sequence on the flexible film substrate to obtain a stretched flexible film substrate;
[0055] Print a plurality of working electrodes and a plurality of signal transmission channels on the surface of the stretched flexible film substrate, and then release the stretched flexible film substrate to obtain a flexible film precursor; wherein the working electrodes and the flexible film precursor in the flexible film precursor The signal transmission channel has a corrugated structure corresponding to the flexible film substrate;
[0056] The signal transmission channel on the surface of the flexible film precursor is encapsulated to obtain a flexible and stretchable biosensor.
[0057] In the invention, the encapsulation treatment and stretching treatment of the carbon nano...
Embodiment 1
[0082] according to figure 1 The structure shown is to prepare flexible and stretchable biosensors; 1-polydimethylsiloxane film substrate, 2-graphene / nano silver composite conductive ink working electrode, 3-parylene encapsulation structure, 4- Graphene / nano-silver composite conductive ink signal transmission channel:
[0083] After cleaning the polydimethylsiloxane film with deionized water, air-dry it at 80° C. to obtain the cleaned polydimethylsiloxane film;
[0084] The cleaned polydimethylsiloxane film is subjected to encapsulation treatment, stretching treatment and ultraviolet surface modification technology treatment by carbon nanotube braid to obtain a stretched flexible film substrate;
[0085] Stretch the net, make a positive base plate, apply photosensitive glue, expose to the net for 5 minutes, develop for 5 hours and harden the film for 15 minutes to obtain a printing plate;
[0086]Use described printing plate, print working electrode and signal transmission c...
Embodiment 2
[0089] according to figure 1 The structure shown is to prepare flexible and stretchable biosensors; 1-polydimethylsiloxane film substrate, 2-graphene / nano silver composite conductive ink working electrode, 3-parylene encapsulation structure, 4- Graphene / nano-silver composite conductive ink signal transmission channel:
[0090] After cleaning the polydimethylsiloxane film with absolute ethanol, air-dry it at 90° C. to obtain the cleaned polydimethylsiloxane film;
[0091] The cleaned polydimethylsiloxane film is subjected to encapsulation treatment, stretching treatment and ultraviolet surface modification technology treatment by carbon nanotube braid to obtain a stretched flexible film substrate;
[0092] Stretch the net, make a positive base plate, apply photosensitive glue, expose to the net for 5 minutes, develop for 5 hours and harden the film for 15 minutes to obtain a printing plate;
[0093] Use described printing plate, print working electrode and signal transmission...
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