Organic electroluminescence device and method for manufacturing same
An electroluminescent device and luminescent technology, which are applied in the fields of electric solid-state devices, chemical instruments and methods, semiconductor/solid-state device manufacturing, etc., to achieve the effects of improving lifespan, easy large-scale preparation, and cheap materials
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Embodiment 1
[0054] A method for preparing an organic electroluminescent device, comprising the following steps:
[0055] (1) Preparation of functional layer, light-emitting layer and metal cathode on the anode substrate
[0056] a. Pretreatment of conductive glass substrate
[0057] Take the ITO glass substrate, wash with detergent, ethanol, pure water, and acetone in sequence, all with an ultrasonic cleaner. Each wash is performed for 5 minutes and stopped for 5 minutes. Repeat the method 3 times, and then Then dry it in an oven for use, and then perform surface activation treatment on the cleaned ITO glass substrate to increase the oxygen content of the surface layer of the ITO glass substrate and improve the work function of the surface of the ITO glass substrate; the thickness of ITO is 100nm;
[0058] b. Preparation of functional layer, light-emitting layer and metal cathode
[0059] A hole injection layer, a hole transport layer, a light-emitting layer, an electron transport layer...
Embodiment 2
[0076] A method for preparing an organic electroluminescent device, comprising the following steps:
[0077] (1) Preparation of functional layer, light-emitting layer and metal cathode on the anode substrate
[0078] a. Pretreatment of conductive glass substrate
[0079] Take the ITO glass substrate, wash with detergent, ethanol, pure water, and acetone in sequence, all with an ultrasonic cleaner. Each wash is performed for 5 minutes and stopped for 5 minutes. Repeat the method 3 times, and then Then dry it in an oven for use, and then perform surface activation treatment on the cleaned ITO glass substrate to increase the oxygen content of the surface layer of the ITO glass substrate and improve the work function of the surface of the ITO glass substrate; the thickness of ITO is 100nm;
[0080] b. Preparation of functional layer, light-emitting layer and metal cathode
[0081] A hole injection layer, a hole transport layer, a light-emitting layer, an electron transport layer...
Embodiment 3
[0091] A method for preparing an organic electroluminescent device, comprising the following steps:
[0092] (1) Preparation of functional layer, light-emitting layer and metal cathode on the anode substrate
[0093] a. Pretreatment of conductive glass substrate
[0094] Take the ITO glass substrate, wash with detergent, ethanol, pure water, and acetone in sequence, all with an ultrasonic cleaner. Each wash is performed for 5 minutes and stopped for 5 minutes. Repeat the method 3 times, and then Then dry it in an oven for use, and then perform surface activation treatment on the cleaned ITO glass substrate to increase the oxygen content of the surface layer of the ITO glass substrate and improve the work function of the surface of the ITO glass substrate; the thickness of ITO is 100nm;
[0095] b. Preparation of functional layer, light-emitting layer and metal cathode
[0096] A hole injection layer, a hole transport layer, a light-emitting layer, an electron transport layer a...
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Abstract
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