Zinc oxide porous film doped with copper oxide and preparation method thereof
A technology of zinc oxide thin film and porous thin film is applied in the field of copper oxide doped zinc oxide porous thin film and its preparation, which can solve the problems of difference in detection performance, uneven thickness of thin film, small specific surface area of thin film, etc., so as to improve sensitivity and response. The effect of improving speed, specific surface area, and improving gas sensing performance
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Embodiment 1
[0039] The concrete steps of preparation are:
[0040]Step 1, according to the concentration ratio of copper ions: zinc ions is 0.1:99.9, uniformly mix copper nitrate solution and zinc nitrate solution with a concentration of 0.05 mol / L to obtain a metal oxide precursor solution.
[0041] Step 2, first immerse the single-layer colloidal crystal template in the metal oxide precursor solution, after it is detached from the substrate and floats on the surface of the metal oxide precursor solution, pick up the single-layer colloidal crystal with the substrate and cover it On the surface of the substrate, a substrate covered with a single-layer colloidal crystal and impregnated with a metal oxide precursor solution is obtained; wherein, the colloidal balls used in the single-layer colloidal crystal template are polystyrene colloidal balls, and the substrate has a diameter of 2.5mm , A ceramic tube with a length of 5 mm on which a platinum electrode is attached. Then, the substrate...
Embodiment 2
[0044] The concrete steps of preparation are:
[0045] Step 1, according to the concentration ratio of copper ions: zinc ions is 1:99, uniformly mix copper nitrate solution and zinc nitrate solution with a concentration of 0.1 mol / L to obtain a metal oxide precursor solution.
[0046] Step 2, first immerse the single-layer colloidal crystal template in the metal oxide precursor solution, after it is detached from the substrate and floats on the surface of the metal oxide precursor solution, pick up the single-layer colloidal crystal with the substrate and cover it On the surface of the substrate, a substrate covered with a single-layer colloidal crystal and impregnated with a metal oxide precursor solution is obtained; wherein, the colloidal balls used in the single-layer colloidal crystal template are polystyrene colloidal balls, and the substrate has a diameter of 2.5mm , A ceramic tube with a length of 5 mm on which a platinum electrode is attached. Then, the substrate cov...
Embodiment 3
[0049] The concrete steps of preparation are:
[0050] Step 1, according to the concentration ratio of copper ions: zinc ions is 30:70, uniformly mix copper nitrate solution and zinc nitrate solution with a concentration of 0.25 mol / L to obtain a metal oxide precursor solution.
[0051] Step 2, first immerse the single-layer colloidal crystal template in the metal oxide precursor solution, after it is detached from the substrate and floats on the surface of the metal oxide precursor solution, pick up the single-layer colloidal crystal with the substrate and cover it On the surface of the substrate, a substrate covered with a single-layer colloidal crystal and impregnated with a metal oxide precursor solution is obtained; wherein, the colloidal balls used in the single-layer colloidal crystal template are polystyrene colloidal balls, and the substrate has a diameter of 2.5mm , A ceramic tube with a length of 5 mm on which a platinum electrode is attached. Then, the substrate c...
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Abstract
Description
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Application Information
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