Photoelectric immune sensor based on water-soluble Cd-Ag-Te quantum dot/nano-gold composite materials
A composite material and nano-gold technology, which is applied in the preparation of new water-soluble Cd-Ag-Te quantum dots/nano-gold composite materials, and the application field of cardiac troponin I photoelectric immunosensor, which can solve the problem of low photoelectric conversion efficiency, etc. problems, to achieve the effect of maintaining antibody biological activity, strong fluorescence intensity and stability, and good conductivity
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Embodiment 1
[0053] A novel water-soluble Cd-Ag-Te quantum dot, its synthesis steps are as follows:
[0054] Preparation of NaHTe: add 0.45g NaBH to a glass bottle 4 , 10mL ultrapure water, ice bath, add 0.0127g tellurium powder, sealed reaction 2h (equation: 2Te+4NaBH 4 +7H 2 O→2NaHTe+Na 2 B 4 o 7 +14H 2 ↑), to obtain a colorless and transparent NaHTe solution (concentration is 0.01mol L -1 ),spare.
[0055] Scheme 1: Under nitrogen protection, add 80mL of 0.002mol·L to a 250mL three-neck round bottom flask -1 CdCl 2 Solution, 20mL 0.016mol·L -1 N-acetyl-L-cysteine solution, 40ml twice distilled water, mix the solution evenly; use 1mol L -1 NaOH solution to adjust the pH of the mixture to 11.5; add 2mL of 0.01mol L -1 AgNO 3 solution, and react in the dark for 1h; then add 3mL of freshly prepared 0.01mol·L -1 NaHTe solution, under the protection of nitrogen, reacted at 100°C for 1h, and obtained the fluorescence emission wavelength of 550nm, such as figure 1 Cd-Ag-Te quant...
Embodiment 2
[0061] A preparation method of nano gold, the steps are as follows:
[0062] (1) Synthetic gold species: add 0.42mL 0.002mol L to 0.951mL twice distilled water -1 HAuCl 4 , mix well, add 1.25mL 0.2mol·L -1 1-(10-Bromodecyl)-3-methylimidazolium bromide, then add 0.3mL of freshly prepared 0.01mol·L -1 NaBH 4 Solution, standing at room temperature for 2h to obtain nano-gold species;
[0063] (2) Synthesis of nano-gold: 2.6mL twice distilled water, 1.67mL 2×10 -3 mol L - 1 HAuCl 4 , 3.96mL 0.4mol L -1 1-(10-Bromodecyl)-3-methylimidazolium bromide, 54 μL 0.1mol L -1 Ascorbic acid was stirred vigorously for 2 minutes, and finally 80 μL of the above-prepared gold species was added, stirred for 20 seconds, and left at room temperature for 24 hours to prepare nano-gold.
[0064] UV-Vis absorption spectra such as Figure 4 As shown, the maximum absorption peak of nano-gold is at 540nm, which is obviously related to figure 1 The Cd-Ag-Te quantum dots shown in a have the bes...
Embodiment 3
[0066] A kind of preparation method of water-soluble Cd-Ag-Te quantum dot / nano gold composite material, its steps are as follows:
[0067] Add 16 μL 0.01mol·L -1 Mercaptoethylamine solution, mixed evenly, and allowed to stand at room temperature for 12 hours; 100 μL of quantum dot solution containing 10 mg·mL -1 1-(3-Dimethylaminopropyl)-3-ethylcarbodiimide hydrochloride (EDC) and 20mg·mL -1 A mixed solution of N-hydroxysuccinimide (NHS), mixed evenly, and left to stand at 37°C for 1h; the above two solutions were mixed evenly, let stand at 37°C for 24h, centrifuged and washed 3 times with twice distilled water, and washed with two Diluted to 1 mL with sub-distilled water to obtain a Cd-Ag-Te quantum dot / nano-gold composite material, referred to as Cd-Ag-Te / AuNPs composite material.
[0068] through transmission electron microscopy Figure 6 As shown, the gold nanoparticles agglomerated to a certain extent, and a large number of quantum dots were closely attached to the su...
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