Electrogenerated chemiluminescence sensor with high sensitivity in cancer cell detection and fabrication method of sensor
A sensitive detection and electrochemistry technology, applied in chemiluminescence/bioluminescence, scientific instruments, analysis by chemical reaction of materials, etc., can solve the problems of cumbersome operation, long analysis and detection time, etc. Strong and effective
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Embodiment 1
[0021] Fabrication method of electrochemiluminescence sensor for highly sensitive detection of HepG2 liver cancer cells based on nanocomposite materials:
[0022] (1) Synthesis of nano-titanium dioxide material: first dissolve 0.25g of titanium sulfate in 90mL of distilled water, under magnetic stirring, slowly add 10mL of ethylenediaminetetraacetic acid with a concentration of 0.025M into the titanium sulfate solution until a white precipitate appears Afterwards, continue to react for 2 hours, centrifuge, wash, and dry at 60 degrees Celsius for 6 hours, and set aside. The above reactions except the last step were carried out at room temperature of 25°C.
[0023] (2) Synthesis of composite nanomaterial ionic liquid: ultrasonically clean titanium dioxide nanoparticles for 5 minutes, and disperse them in ultrapure water with a concentration of 5 mg / mL, and set aside. Add 1 mL of 0.2 mol / mL sodium sulfide solution and 1 mL of 0.2 mol / mL cadmium chloride solution successively to ...
Embodiment 2
[0030] Fabrication method of electrochemiluminescence sensor for highly sensitive detection of intestinal cancer cells based on nanocomposite materials
[0031] (1) Synthesis of nano-titanium dioxide material: In a 100mL three-necked flask, dissolve 0.35g of titanium sulfate in 100mL of distilled water, under magnetic stirring, slowly add 20mL of EDTA with a concentration of 0.05M into the three-necked flask with white After precipitation appeared, continue to react at room temperature for 2.5 hours, centrifuge, wash, and dry at 60° C. for 6.5 hours for later use. The above reactions were carried out at room temperature (25° C.) except for the last step.
[0032] (2) Synthesis of composite nanomaterial ionic liquid: ultrasonically clean titanium dioxide nanoparticles for 5 minutes, and disperse them in ultrapure water to reach a concentration of 5 mg / mL, and set aside; add them dropwise in 1 mL of dispersed nano titanium dioxide materials 1.5mL sodium sulfide solution with a ...
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