Graphene-based attached skin sensor preparation method
A graphene and sensor technology, applied in the fields of sensors, medical science, diagnostic recording/measurement, etc., can solve the problems of inconvenient installation and use, large size of the instrument, difficult to wear, etc., and achieve the effect of rapid response, high sensitivity and obvious effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Current Assignee / Owner
- Publication Date
- 2019-03-12
- Estimated Expiration
- Not applicable · inactive patent
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Abstract
Description
technical field
[0001] The invention relates to a preparation method of a graphene-based adhesive skin sensor, which belongs to the technical field of human body detection. Background technique
[0002] Movement of the skin surface can characterize many physiological activities. For example, the undulation and stretching of the chest skin or abdominal skin caused by human breathing can be used to represent the breathing frequency and volume of the human body; the vibration of the skin at the heart can also represent information such as heartbeat and heart rate; the skin at the throat of the human body Vibration information can represent neck movements such as human speaking, vocal cord vibration, swallowing, and head turning; skin vibration information at the human wrist can represent pulse pulse, wrist rotation and other information.
[0003] In terms of respiration detection, most of the wearable respiration monitoring devices on the market use ceramic capacitance or cera...
Examples
Embodiment Construction
[0022] The preparation method of the attached type graphene skin sensor proposed by the present invention comprises the following steps:
[0023] (1) The graphene oxide solution is drip-coated or spin-coated on the water transfer paper to form a graphene oxide layer 3 on the water transfer paper, and the graphene oxide film is naturally dried to make the dry graphene oxide layer 4 The thickness is 5-40 microns, such as figure 1 (a) shown.
[0024] (2) Scanning irradiation is carried out on the upper surface of the dry graphene oxide layer 4 by means of laser irradiation, and the irradiated dry graphene oxide layer 4 is reduced to a graphene sensing layer 5, which appears black. The wavelength of the irradiated laser is 400-500nm, and the laser power density is 10mW / cm 2 -50mW / cm 2 Between, the scanning speed is 1mm / s-100mm / s. like figure 1 (b) shown.
[0025] (3) Put the structure of above-mentioned step (2) into water, make the sacrificial layer 2 of graphene sensing la...