Microelectrode material, preparation method of microelectrode and detection device applying material
A detection device and micro-electrode technology, applied in the field of biomedical electronics, can solve problems such as inability to use accurate assays, inaccurate reports, and high risk of secondary infection, and achieve convenient and quick human trauma, avoid human trauma, and high safety factor Effect
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Embodiment 1
[0028] Such as figure 1 Shown is a schematic cross-sectional structure diagram of the hollow microelectrode material, which is a regular cube structure. A kind of microelectrode material, described microelectrode material is mixed by graphene, glassy carbon and amino acid, and the content of described graphene is 10%-30%, and the content of described glassy carbon is 30%-60%, so The content of said amino acid is 10%-60%. The preparation method of the microelectrode material is as follows: use a high-temperature-resistant grinding tool to make a numerical shape; put polyacrylonitrile resin powder and graphene into the grinding tool; slowly heat to high temperature in an inert gas protection; slowly cool after forming , vibrate and polish on the abrasive; then turn to ethanol and deionized water for ultrasonic polishing; use the method of electrification to absorb the amino acid.
[0029] Such as figure 2 Shown is the redox peak diagram of the microelectrode material. Curv...
Embodiment 2
[0031] Such as image 3Shown is a schematic diagram of the structure of a microelectrode, a method for making a microelectrode from a microelectrode material, including the following steps. The first step is to use a high temperature resistant material to make a mold with a fractal shape; the second step is to use a polyacrylonitrile resin The powder and graphene are put into the grinding tool; the third step, the semi-finished product of the second step is slowly heated to a high temperature in an inert gas protection; the fourth step is slowly cooled after forming, and vibration polishing is performed on the abrasive; the fifth step, Then turn to ethanol and deionized water for ultrasonic polishing; the sixth step, heat and fix the wire with polytetrafluoroethylene; the seventh step, mix the rubber, silica sol, and liquid evenly; the eighth step, apply the uniformly mixed liquid to the surface of the wire Drying; the ninth step is to mix carbon nanotubes, single crystal copp...
Embodiment 3
[0033] Such as Figure 4 As shown, a device for judging the physiological state of a human body using microelectrode materials, the device includes a sending end and a receiving end, the sending end includes a sensor, a scanner, a primary processor and a transmitter, and the sensor includes a microelectrode material, For detecting biological signals, the scanner is used to scan the biological signals monitored by the sensor, the primary processor is used to control scanning parameters, and the transmitter is used to transmit signals; the sensor, scanner, and primary processing The transmitter and the transmitter are connected in sequence; the receiving end includes a receiver, a secondary processor, and a data transmission interface, the receiver is used to receive the information transmitted by the transmitter, and the secondary processor is used to process the information transmitted by the receiver For the incoming information, the data transmission interface is used to tra...
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