New type organic electroluminous appliance
An electroluminescent device, an organic technology, applied in the field of optoelectronics, can solve problems such as limiting the service life of the device
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Embodiment 1
[0038] Implementation example 1: Electron beam evaporation coating of lanthanum hexaboride
[0039] Put lanthanum hexaboride (single crystal or polycrystal) in a graphite pot and heat it with an electron beam to evaporate and deposit lanthanum hexaboride on a glass substrate. Figure 4 shows the transmittance characteristics of a lanthanum hexaboride film with a thickness of 150 nm. It can be seen that in the entire visible spectrum range, the lanthanum hexaboride film has a relatively high optical transmittance, while the magnesium-silver alloy cathode film with the same thickness can hardly transmit visible light at this thickness.
Embodiment 2
[0040] Implementation example 2: OEL device using lanthanum hexaboride cathode
[0041] A structure of an OEL device using a lanthanum hexaboride cathode is shown in Figure 7, after first depositing an ITO film 9 on a glass substrate 8, and then sequentially thermally evaporating a 12 nm thick copper phthalocyanine film 10 as a hole transport layer 6 , 60 nanometers thick 8-hydroxyquinine aluminum film 11 as the organic light-emitting layer 5 and 60 nanometers thick 8-hydroxyquinine aluminum film 12 as the electron transport layer 7; Thin film 13, and finally rethermally evaporated 1 micron thick metal aluminum layer 14 to enhance the conductivity of the cathode.
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