A kind of preparation method of photoelectrochemical immunosensor for detecting cardiac troponin i
A cardiac troponin and immunosensor technology, which is applied in the fields of material electrochemical variables, scientific instruments, instruments, etc., can solve the long-term detection time of chemiluminescence immunoassay, the complicated and cumbersome operation of enzyme-linked immunoassay, and the poor controllability of fluorescence analysis, etc. problems, to achieve the effect of promoting electron transfer, reducing other interference effects, and good biocompatibility
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Embodiment 1
[0048] Embodiment 1 Preparation of photoelectrochemical sensor
[0049] (1) Preparation of tungsten trioxide material
[0050] Dissolve 1.0 g of tungsten chloride in 35 mL of absolute ethanol, stir at room temperature for 1 h, transfer the mixed solution to an autoclave and react at 120 °C for 4 h, cool to room temperature naturally after the reaction, and then The product was washed 3 times with absolute ethanol and ultrapure water respectively. After washing, the product was dried at 40 °C for 10 h to obtain a sea urchin-shaped tungsten trioxide material;
[0051] (2) Preparation of bismuth sulfide nanorod materials
[0052] Dissolve 1.5 g of bismuth nitrate pentahydrate in 20 mL of ethylene glycol, stir at room temperature for 20 min, and use this solution as solution A; dissolve 1.2 g of sodium sulfide nonahydrate in 20 mL of ultrapure water, and stir at room temperature for 10 min min, this solution was used as solution B; 1.8 g of urea was dissolved in 10 mL of ultrapu...
Embodiment 2
[0073] Embodiment 2 Framework of photoelectrochemical sensor
[0074] (1) Preparation of tungsten trioxide material
[0075] Dissolve 1.5 g of tungsten chloride in 40 mL of absolute ethanol, stir at room temperature for 1.5 h, transfer the mixed solution to an autoclave at 160 °C for 5 h, and cool to room temperature naturally after the reaction. The product was washed 3 times with absolute ethanol and ultrapure water respectively. After washing, the product was dried at 50 °C for 11 h to obtain a sea urchin-shaped tungsten trioxide material;
[0076] (2) Preparation of bismuth sulfide nanorod materials
[0077] Dissolve 1.8 g of bismuth nitrate pentahydrate in 25 mL of ethylene glycol, stir at room temperature for 25 min, and use this solution as solution A; dissolve 1.3 g of sodium sulfide nonahydrate in 30 mL of ultrapure water, and stir at room temperature for 15 min min, this solution was used as solution B; 1.8 g urea was dissolved in 30 mL ultrapure water, stirred eve...
Embodiment 3
[0098] Example 3 Construction of Photoelectrochemical Immunosensor
[0099] (1) Preparation of tungsten trioxide material
[0100] Dissolve 2.0 g of tungsten chloride in 50 mL of absolute ethanol, stir at room temperature for 2 h, transfer the mixed solution to an autoclave and react at 180 °C for 8 h, cool to room temperature naturally after the reaction, and then The product was washed 3 times with absolute ethanol and ultrapure water respectively. After the washing, the product was dried at 60 °C for 12 h to obtain a sea urchin-shaped tungsten trioxide material;
[0101] (2) Preparation of bismuth sulfide nanorod materials
[0102] Dissolve 2.0 g of bismuth nitrate pentahydrate in 30 mL of ethylene glycol, stir at room temperature for 30 min, and use this solution as solution A; dissolve 1.5 g of sodium sulfide nonahydrate in 50 mL of ultrapure water, and stir at room temperature for 20 min min, this solution was used as solution B; 2.0 g of urea was dissolved in 40 mL of...
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