A kind of preparation method of Cu2O nanometer array
A nano-array and voltage technology, applied in the field of preparation of Cu2O nano-array, can solve the problems of difficult control of process parameters, high technical equipment requirements, easy agglomeration of sol, etc., and achieves favorable directional transmission, simple and safe operation, and short production cycle. Effect
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Embodiment 1
[0008] 8.8 mmol / L NH 4 F solution, 7.54 mol / L glycerin aqueous solution and 0.228 mmol / L CTAB solution are mixed uniformly to prepare a weak acid electrolyte. The Cu slice was used as the anode and the Pt slice was used as the cathode. The anodic oxidation voltage was oxidized at 20 V for 2 minutes. During the reaction, the electrolyte was always in a state of uniform magnetic stirring. Take out the Cu slice and get Cu on the Cu slice 2 O nano array. Test its photovoltage to reach 0.0801 V.
Embodiment 2
[0010] 0.035 mol / L NH 4 F solution, 7.80 mol / L glycerin aqueous solution and 0.027 mmol / L CTAB solution are mixed uniformly to prepare a weak acid electrolyte. The Cu slice was used as the anode and the Pt slice was used as the cathode. The oxidization was carried out at 15 V anodizing voltage for 14 minutes. During the reaction, the electrolyte was always in a state of uniform magnetic stirring. Take out the Cu slice and get Cu on the Cu slice 2 O nano array. Test its light voltage to reach 0.1732 V.
Embodiment 3
[0012] 0.062 mol / L NH 4 F solution, 7.93 mol / L glycerin aqueous solution and 0.027 mmol / L CTAB solution are mixed uniformly to prepare a weak acid electrolyte. The Cu slice was used as the anode and the Pt slice was used as the cathode. The oxidization was performed at an anodic oxidation voltage of 25 V for 10 minutes. During the reaction, the electrolyte was always kept in a state of uniform magnetic stirring. Take out the Cu slice and get Cu on the Cu slice 2 O nano array. Test its photovoltage to reach 0.2693 V.
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