Ink and preparation method thereof
An ink and magnetic nanoparticle technology, applied in inks, household appliances, applications, etc., can solve the problems affecting the luminous efficiency and stability of the device, and the imbalance of carrier injection, so as to improve the balance of carrier injection and improve the device. performance, and the effect of improving film morphology
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preparation example Construction
[0049] Another aspect of the embodiments of the present invention provides a method for preparing ink, comprising the following steps:
[0050] S01. Provide each component according to the formula of the above-mentioned ink;
[0051] S02. Dispersing the magnetic nanoparticles and the carrier transport material in an organic solvent to obtain an ink.
[0052] The preparation method of the ink provided in the embodiment of the present invention only needs to disperse the magnetic nanoparticles and the carrier transport material in the organic solvent, or disperse the magnetic nanoparticles, the carrier transport material and the surfactant in the organic solvent. Yes, the operation is simple and easy to control, no harsh conditions are required, and mass production can be realized.
[0053] Specifically, in the above-mentioned step S01, the ink formula, the ratio of each component, the material and its preferred situation are as described above, and in order to save space, deta...
Embodiment 1
[0064] A method for preparing ink, comprising the steps of:
[0065] Under vigorous stirring, 5ml of the prepared Fe nanoparticle dispersion was added dropwise into 100ml of ethanol and 1,2,4-butanetriol mixed solution of nanomolybdenum oxide particles, and then continued to stir for 6h to disperse evenly. Then continue to drop ethylene glycol diacetate into the above solution, and continue to stir evenly to obtain the N-type semiconductor-magnetic nano metal particle composite ink. Wherein, the ink contains 10wt% Fe, 28wt% molybdenum oxide, 30wt% ethanol, 30wt% 1,2,4-butanetriol and 2wt% ethylene glycol diacetate.
Embodiment 2
[0067] A QLED device, including the following material layers sequentially stacked and combined: ITO / PEDOT:PSS (poly(3,4-ethylenedioxythiophene)-polystyrenesulfonic acid) / MoO 3 &Fe / quantum dot CdSe / ZnO / Al electrode.
[0068] The preparation method of the QLED device is:
[0069] Provide ITO substrate, prepare PEDOT:PSS on the ITO substrate;
[0070] The N-type semiconductor-magnetic nano-metal particle composite ink prepared in Example 1 is printed on the PEDOT:PSS layer by an inkjet printing device as a hole transport layer;
[0071] A quantum dot CdSe layer and a ZnO layer are sequentially deposited on the hole transport layer, and an Al electrode is prepared on the ZnO layer.
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