Broad-spectrum low-potential electrochemical luminescence system and construction method thereof
A construction method, electrochemical technology, applied in the field of analysis, to achieve the effect of facilitating detection, excellent water solubility, and avoiding interference
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Embodiment 1
[0078] Add 5 mL of 80 mM ATT dropwise to 7 mL of AuCl 3• HCl (10 mg / mL), adjust pH equal to 8.0. After purification with isopropanol, water was added to adjust the concentration to 8 mg / mL. Add 12 mL of ARG (160 mmol / L) solution to 12 mL of the above solution, incubate at 37° C. for 12 hours, purify the obtained quantum dots with isopropanol, and store them at low temperature until use. Prepare a 1mg / mL solution to detect the fluorescence spectrum, such as figure 1 shown. Depend on figure 1 It can be seen that the position of the fluorescence spectrum of the quantum dot is in the band of the green light region.
Embodiment 2
[0080] Prepare 0.80mL 0.20mol / L CdCl 2 Solution, add 72.5mg HMP and 34.6μL MPA solution, dilute to 50mL. Adjust the pH to 8.0 with sodium hydroxide solution. Na 2 SeO 3 (0.8mL, 0.02M) was added dropwise into the above solution, heated for 10 minutes, then added 3.7mL of hydrazine hydrate, and refluxed for 20 hours. The obtained quantum dots were purified with isopropanol and stored at low temperature until use. The fluorescence spectrum of the quantum dots is as follows figure 2 shown. Depend on figure 2 It can be seen that the location is in the green light band.
Embodiment 3
[0082] Ru(bpy) to be purchased 3 2+ Prepare a 1mg / mL solution to detect the fluorescence spectrum, such as image 3 shown. Depend on image 3 It can be seen that the fluorescence spectrum of the quantum dot is located in the yellow-red band region.
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