Quantum dot ink and quantum dot light emitting diode preparation method
A technology of quantum dots and quantum dot materials, which is applied in the field of preparation of quantum dot inks and quantum dot light-emitting diodes. Transportability, improvement of yield rate and production efficiency, effect of uniform thickness
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[0046] (2) Preparation method of quantum dot light-emitting diodes
[0047] On the other hand, the embodiment of the present invention also provides a method for preparing a quantum dot light-emitting diode. The preparation method of the quantum dot light-emitting diode includes the steps of treating the anode substrate, preparing a hole injection and / or hole transport layer on the anode, forming a quantum dot light-emitting layer, and forming electrons on the quantum dot light-emitting layer. The step of transporting layer and / or electron injecting layer and the step of preparing cathode, etc. Except for the preparation steps of the quantum dot light-emitting layer, other steps can be prepared according to the conventional steps of quantum dot light-emitting diodes. Wherein the quantum dot luminescent layer is prepared according to the steps of the quantum dot luminescent layer as follows:
[0048] A. Print the quantum dot ink layer with the quantum dot ink by inkjet printing...
Embodiment 1
[0057] This embodiment provides a quantum dot ink, which includes 12wt% oleylamine-coordinated red CdSe / ZnS quantum dots, 8wt% 1,1-bicyclohexane solvent, 80wt% N,N-dimethylformaldehyde Among them, 1,1-bicyclohexane and N,N-dimethylformamide constitute a mixed solvent, and all solvents are purified by corresponding methods to remove water and oxygen to a purity greater than 99.9%.
[0058] Its configuration method:
[0059] The following components were added to the container, with stirring, the order of addition was: 12wt% oleylamine-coordinated red CdSe / ZnS quantum dots, 8wt% 1,1-dicyclohexyl solvent, 80wt% N, N-dimethylformamide stirred the mixture for 30 minutes to obtain a quantum dot ink composition.
[0060] Utilize the quantum dot ink provided in this embodiment 1 to print into a 20×30um red quantum dot layer with a resolution of 200×200ppi by an inkjet printer, and then heat it to 130° C. on a hot plate under a vacuum of 1×10 -6 Volatilize and dry under Torr for 30 m...
Embodiment 2
[0062] The present embodiment provides a kind of quantum dot ink, and it packs 10wt% oleylamine stabilized green CdZnSe / CdZnS and 20%wt dodecane, 30%wt decalin, 40wt% N-methyl caprolactam; Wherein, ten Dioxane, decahydronaphthalene, and cyclo-N-methylcaprolactam form a mixed solvent, and all solvents are purified by corresponding methods to remove water and oxygen to a purity greater than 99.9%.
[0063] Its configuration method:
[0064] The following components were added to the vessel with stirring in the following order: 10 wt% oleylamine stabilized green CdZnSe / CdZnS, 20% wt dodecane, 30% wt decalin, 40 wt% N-formazan The mixture was stirred with caprolactam for 30 minutes to obtain a quantum dot ink composition.
[0065] Use the quantum dot ink provided in Example 2 to print a green quantum dot layer of 20 × 30um with a resolution of 200 × 200ppi through an inkjet printer, and then heat it on a hot plate to 180°C and volatilize and dry it for 30 minutes under nitrogen f...
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