Preparation method of quantum dot/zinc oxide core shell structure and semiconductor device of quantum dot/zinc oxide core shell structure
A core-shell structure and quantum dot technology, applied in the field of preparation of quantum dot/zinc oxide core-shell structure, can solve the problems of low light/electroluminescence efficiency, poor stability of quantum dots, low charge injection efficiency, etc., and achieve excellent devices. performance, low driving voltage, effect of increasing carrier injection
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[0060] Such as figure 1 As shown, it is a schematic diagram of the overall structure of the first embodiment of the present invention. This embodiment provides a method for preparing a quantum dot / zinc oxide core-shell structure. In this embodiment, zinc oxide is formed on the surface of the quantum dot by chemical epitaxy. Quantum dot / zinc oxide core-shell structure, the preparation method of the quantum dot / zinc oxide core-shell structure comprises the following steps:
[0061] S1: Dissolve the zinc precursor in oleic acid and oleylamine at a temperature of 120°C to obtain a zinc oleate precursor mixture;
[0062] The mass ratio of the zinc precursor to oleic acid and oleylamine is 1:1.3-1.5;
[0063] The mass ratio of oleic acid to oleylamine is 2:3;
[0064] Stir at a low speed after mixing, and the stirring speed is 60-80r / min, under the premise of ensuring that the zinc precursor is not damaged, realize the uniform dispersion of the zinc precursor in the oleic acid and...
no. 2 example
[0080] The present invention also provides a second embodiment, which is a method for preparing a quantum dot / zinc oxide core-shell structure. The content of this embodiment is partly the same as that of the above embodiment, except that in the step In S2, while providing ultraviolet light as a reaction medium, nano-scale titanium dioxide is added as a medium, and the internal luminous efficiency is adjusted. The luminous efficiency can be understood when the quantum dot / zinc oxide core-shell structure prepared by the present invention As a light-emitting material of a photoluminescent device, the enhancement of the luminous efficiency achieved;
[0081] Specifically: add NaHCO in the above step S2 3 , after the reaction time is 1h, increase nano-scale titanium dioxide, the increase of the nano-scale titanium dioxide is 0.1-0.3% of the mass of the entire reaction solution, reduce the reaction temperature to 70-80°C, and continue to maintain the irradiation environment provided...
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