Preparation method of ultraviolet light detector with tin oxide-zinc oxide nanorod array heterojunction structure
A technology of zinc oxide nanorods and nanorod arrays, which is applied in the field of semiconductor photodetection, can solve the problems of slow response rate of ultraviolet photodetectors, influence photoelectron absorption and transfer, low photoresponsivity, etc., and achieve excellent UV photoresponsivity and optical sensitivity. The effect of response rate and good UV light selectivity
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Embodiment 1
[0026] Configured with 13mM SnCl 4 ·5H 2 O solution (deionized water: absolute ethanol = 1:1) 60mL, add 3mL HCl (wt% = 37 ~ 38%), after magnetic stirring for 15min, add FTO conductive glass coated with a seed layer, and react at 180°C for 12h . After the reaction was completed, it was cooled to room temperature, rinsed alternately with deionized water and absolute ethanol three times, dried at 60°C, and calcined at 400°C for 30 minutes at high temperature. Update the growth solution 3 times to get the desired SnO 2 Nanorod array structure.
[0027] The tin oxide nanorods have a diameter of 44.64nm and a length of 357.14nm.
Embodiment 2
[0029] Configured with 13mM SnCl 4 ·5H 2 O solution (deionized water: absolute ethanol = 1:1) 60mL, add 3mL HCl (wt% = 37 ~ 38%), after magnetic stirring for 15min, add FTO conductive glass coated with a seed layer, and react at 180°C for 12h . After the reaction was completed, it was cooled to room temperature, rinsed alternately with deionized water and absolute ethanol three times, dried at 60°C, and calcined at 400°C for 30 minutes at high temperature. A 5.0mM ethanol solution of zinc acetate was spin-coated on the FTO conductive glass at a spin-coating rate of 2000r / min for a spin-coating time of 30s. After six times of spin-coating, it was calcined at 350°C for 60min at high temperature. The treated sample was placed in a place containing 0.37g Zn(NO 3 ) 2 ·6H 2 O and 0.17g urotropine (C 6 h 12 N 4 ) in 50mL aqueous solution; after magnetic stirring for 15min, add FTO conductive glass coated with ZnO seed layer, and react at 95°C for 4h; after the reaction, cool ...
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