Making method and application of CdS sensitized TiO2 environmental estrogen photoelectrochemical sensor
A technology of environmental estrogen and photoelectrochemistry, which is applied in the field of biosensing and detection of new functional materials and environmental pollutants, can solve problems such as poor application, high detection limit, complicated operation, etc., and improve photoelectric conversion efficiency , low detection limit and cheap raw materials
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Embodiment 1
[0040] Example 1 Preparation method and application of CdS-sensitized TiO2 environmental estrogen photoelectrochemical sensor
[0041] (1) The conductive glass was ultrasonically cleaned with acetone, ethanol and ultrapure water, and dried with nitrogen; take 6 μL, 2mg / mL rhodamine B functionalized TiO 2 The solution was added dropwise to the conductive surface of the conductive glass, dried at room temperature, calcined at 400°C for 30 min, and cooled to obtain rhodamine B-TiO 2 Modified glass electrode;
[0042] (2) In Rhodamine B-TiO 2 On the modified glass electrode surface, add 4 μL 0.1 μg / mL environmental estrogen standard solution dropwise, rinse the electrode surface with ultrapure water, and dry in a refrigerator at 4°C;
[0043] (3) Continue to drop 4 μL of 1% BSA solution to seal the non-specific active sites on the electrode surface, rinse the electrode surface with ultrapure water, and dry in a refrigerator at 4°C;
[0044] (4) Continue to drop 4 μL of the mixture of envi...
Embodiment 2
[0046] Example 2 Preparation method and application of CdS-sensitized TiO2 environmental estrogen photoelectrochemical sensor
[0047] (1) The conductive glass was ultrasonically cleaned with acetone, ethanol and ultrapure water in sequence, and dried with nitrogen; take 6 μL, 3 mg / mL rhodamine B functionalized TiO 2 The solution was added dropwise to the conductive surface of the conductive glass, dried at room temperature, calcined at 450°C for 45 min, and cooled to obtain rhodamine B-TiO 2 Modified glass electrode;
[0048] (2) In Rhodamine B-TiO 2 On the modified glass electrode surface, drop 4 μL of 0.5 μg / mL environmental estrogen standard solution, rinse the electrode surface with ultrapure water, and dry in a refrigerator at 4°C;
[0049] (3) Continue to add 4 μL of BSA solution with a mass fraction of 2% to seal the non-specific active sites on the electrode surface, rinse the electrode surface with ultrapure water, and dry in a refrigerator at 4°C;
[0050] (4) Continue to d...
Embodiment 3
[0052] Example 3 Preparation method and application of CdS-sensitized TiO2 environmental estrogen photoelectrochemical sensor
[0053] (1) The conductive glass was ultrasonically cleaned with acetone, ethanol and ultrapure water in sequence, and dried with nitrogen; take 6 μL, 4 mg / mL rhodamine B functionalized TiO 2 The solution was added dropwise to the conductive surface of the conductive glass, dried at room temperature, calcined at 500°C for 60 min, and cooled to obtain rhodamine B-TiO 2 Modified glass electrode;
[0054] (2) In Rhodamine B-TiO 2 On the modified glass electrode surface, drop 4 μL of 1 μg / mL environmental estrogen standard solution, rinse the electrode surface with ultrapure water, and dry in a refrigerator at 4℃;
[0055] (3) Continue to drop 4 μL of 3% BSA solution to seal the non-specific active sites on the electrode surface, rinse the electrode surface with ultrapure water, and dry in a refrigerator at 4°C;
[0056] (4) Continue to drop 4 μL of the mixture of...
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