Preparation method of ratio type broad-spectrum photoelectric immunosensor
An immunosensor and broad-spectrum technology, which is used in the preparation of ratiometric broad-spectrum optoelectronic immunosensors, can solve problems such as food safety accidents and underestimation of the total intake of ochratoxin, achieve good optoelectronic performance, and improve responsiveness. , the effect of stabilizing the photocurrent
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Embodiment 1
[0038] A method for preparing a ratiometric broad-spectrum photoelectric immunosensor, comprising the following steps:
[0039] S1. Synthesis of CdS / MoS on FTO 2 Nanocomposites: synthesis of sheet-like MoS on FTO conductive glass 2 Nanosheets, get MoS 2 Nanosheet-modified FTO, followed by MoS 2 CdS nanoparticles loaded on nanosheets to obtain CdS / MoS 2 Nanocomposite modified FTO;
[0040] The synthesis of flake MoS on FTO conductive glass 2 The specific operation of the nanosheet is: the Na 2 MoO 4 2H 2 O and L-cysteine were added to the mixed solution of water and ammonia water to obtain mixed solution A; FTO and mixed solution A were added to the reactor, after hydrothermal reaction, washed and dried to obtain modified MoS 2 FTO of nanosheets.
[0041] described in MoS 2 The specific operation of loading CdS nanoparticles on the nanosheets is as follows: the CdCl 2 , NH 4 Add Cl, thiourea, and ammonia water to distilled water and heat to obtain solution B; then...
Embodiment 2
[0050] Example 2 CdS / MoS 2 Nanocomposite Characterization
[0051] CdS / MoS 2 Synthesis of Nanocomposites:
[0052] (1) Synthesis of flake MoS on FTO conductive glass 2 . 45 mg of Na 2 MoO 4 2H 2 The L-cysteine of 0 and 100mg joins in the mixed solution of the water of 15ml and ammoniacal liquor, and the volume ratio of control middle water and ammoniacal liquor is 2:1. Then, put the FTO into the reactor, and add the above solution into the reactor, and conduct a hydrothermal reaction at 200° C. for 24 hours. After the reaction, remove the MoS 2 Nanosheet-modified FTO, washed and dried.
[0053] (2) in MoS 2 CdS nanoparticles loaded on the nanosheets. 0.0013mol CdCl 2 , 0.0076mol NH 4 Add Cl, 0.18mol thiourea, and 25.84mL ammonia water to 500ml distilled water and heat to 80°C, then add MoS 2 -FTO was added and reacted for 5 minutes. Remove CdS / MoS after completion 2 Nanocomposite modified FTO, washed and dried.
[0054] MoS 2 The results of the SEM images o...
Embodiment 3
[0056] Example 3 ZnS-Ag 2 S@Ab 2 Nanomaterial Characterization
[0057] ZnS-Ag 2 S@Ab 2 multi-target synthesis
[0058] (1) Synthesis of ZnS-Ag 2 S nanomaterials. 0.023g Zn(Ac) 2 and 0.03g of L-cysteine were added to 15ml of ethylene glycol / water mixed solution with a volume ratio of 1:4, and heated at 150°C for 12 hours. Wash by centrifugation and disperse in 20ml of methanol solution. 20 μL concentration of 5g / LAgNO 3 The solution was added dropwise to the methanol solution of ZnS, stirred, washed by centrifugation and dispersed in 5ml of water.
[0059] (2) Secondary antibody in ZnS-Ag 2 Modifications on S. In 2ml ZnS-Ag 2 To the S solution, add 0.2 mL of thioglycolic acid and stir at room temperature for 12 hours. After washing by centrifugation, disperse in 1 mL of EDC / NHS solution (20 mg·mL -1 / 10mg·mL -1 ) for 1 hour. After washing by centrifugation again, disperse in 1ml of phosphate buffer solution (PBS, pH 7.4, 0.01M), add 10 microliters of 1mg / ml se...
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